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Approximating complex arithmetic circuits with formal error guarantees: 32-bit multipliers accomplished

机译:具有形式错误保证的近似复杂算术电路:完成了32位乘法器

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We present a novel method allowing one to approximate complex arithmetic circuits with formal guarantees on the approximation error. The method integrates in a unique way formal techniques for approximate equivalence checking into a search-based circuit optimisation algorithm. The key idea of our approach is to employ a novel search strategy that drives the search towards promptly verifiable approximate circuits. The method was implemented within the ABC tool and extensively evaluated on functional approximation of multipliers (with up to 32-bit operands) and adders (with up to 128-bit operands). Within a few hours, we constructed a high-quality Pareto set of 32-bit multipliers providing trade-offs between the circuit error and size. This is for the first time when such complex approximate circuits with formal error guarantees have been derived, which demonstrates an outstanding performance and scalability of our approach compared with existing methods that have either been applied to the approximation of multipliers limited to 8-bit operands or statistical testing has been used only. Our approach thus significantly improves capabilities of the existing methods and paves a way towards an automated design process of provably-correct circuit approximations.
机译:我们提出了一种新颖的方法,该方法允许对近似的算术电路进行近似,并在形式上保证近似误差。该方法以独特的方式将用于近似等效检查的形式技术集成到基于搜索的电路优化算法中。我们方法的关键思想是采用一种新颖的搜索策略,该搜索策略将搜索推向可立即验证的近似电路。该方法是在ABC工具中实现的,并对乘数(最多32位操作数)和加法器(最多128位操作数)的函数逼近进行了广泛的评估。在几个小时内,我们构建了一套高质量的Pareto 32位乘法器,可以在电路误差和尺寸之间进行权衡。这是首次获得具有形式错误保证的复杂近似电路,这表明与现有方法相比,我们的方法具有出色的性能和可扩展性,而现有方法要么应用于限制于8位操作数的乘法器逼近,要么应用于统计检验仅已使用。因此,我们的方法大大提高了现有方法的功能,并为实现可证明正确的电路近似的自动化设计过程铺平了道路。

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