谁在缩小嵌入式软件设计的差距?

W. Ecker, P. Bricaud, R. Dömer, Y. Veller, S. Heinen, J. Mössinger, A. V. Schwerin
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引用次数: 0

摘要

正如ITRS路线图所指出的那样,当比较例如HDL和C代码的行数时,嵌入式软件的复杂性水平大于soc的纯硬件复杂性。更糟糕的是,软件复杂性比硬件复杂性增长得快(摩尔定律),软件生产力比硬件生产力增长得慢。一个新的设计缺口——嵌入式软件的缺口——出现了。EDA现在已经确定ESL是一个有足够收入和收入增长的领域,但是他们真的能解决软件生产力的挑战吗?该小组通过介绍EDS在ESW领域的最新产品和解决方案,将其与行业需求进行对比,并讨论解决ESL生产力危机的方法,给出了答案。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Who is closing the embedded software design gap?
As pointed out in the ITRS roadmap, the level of embedded software complexity is greater than the pure HW complexity of SoCs when comparing, for example, lines of HDL and C code. Even worse, SW complexity grows faster than HW complexity (Moore's Law) and SW productivity increases more slowly than HW productivity. A new design gap - the gap of embedded software -- as appeared. EDA has now identified ESL as a field with sufficient revenue and revenue growth, but do they really approach the SW productivity challenge? This panel gives the answer by presenting recent EDS products and solutions in the area of ESW, contrasting them with needs of industry, and discussing ways out of the ESL productivity crisis.
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