没有规范表示的规范计算

A. Mishchenko, R. Brayton, A. Petkovska, Mathias Soeken, L. Amarù, A. Domic
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引用次数: 2

摘要

如果给定一个变量顺序,布尔函数的表示只有一个可能的实例,则该函数的表示是规范的。如果结果仅依赖于布尔函数和变量顺序,而不依赖于函数的表示方式和计算的实现方式,则计算是规范的。在布尔可满足性(SAT)的背景下,计算的规定性意味着结果(可满足实例的令人满意的赋值和不可满足实例的非SAT核心的抽象)不依赖于所使用的功能表示和SAT求解器。本文表明,基于SAT的计算可以规范化,即使SAT求解器不使用规范化数据结构。这在EDA应用程序中带来了优势,例如无冗余乘积和(ISOP)计算,反例最小化等,其中解决方案的唯一性和/或改进的结果质量证明了运行时开销是合理的。
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Canonical Computation without Canonical Representation
A representation of a Boolean function is canonical if, given a variable order, only one instance of the representation is possible for the function. A computation is canonical if the result depends only on the Boolean function and a variable order, and does not depend on how the function is represented and how the computation is implemented.In the context of Boolean satisfiability (SAT), canonicity of the computation implies that the result (a satisfying assignment for satisfiable instances and an abstraction of the unsat core for unsatisfiable instances) does not depend on the functional representation and the SAT solver used.This paper shows that SAT-based computations can be made canonical, even though the SAT solver is not using a canonical data structure. This brings advantages in EDA applications, such as irredundant sum of product (ISOP) computation, counter-example minimization, etc, where the uniqueness of solutions and/or improved quality of results justify a runtime overhead.
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