Developing Models for the Runtime of Programs With Exponential Runtime Behavior

Michael Burger, Giang Nam Nguyen, C. Bischof
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引用次数: 1

Abstract

In this paper, we present a new approach to generate runtime models for programs whose runtime grows exponentially with the value of one input parameter. Such programs are, e.g., of high interest for cryptanalysis to analyze practical security of traditional and post-quantum secure schemes. The model generation approach on the base of profiled training runs is built on ideas realized in the open source tool Extra-P, extended with a new class of model functions and a shared-memory parallel simulated annealing approach to heuristically determine coefficients for the model functions. Our approach is implemented in the open source software SimAnMo (Simulated Annealing Modeler). We demonstrate on various theoretical and synthetic, practical test cases that our approach delivers very accurate models and reliable predictions, compared to standard approaches on x86 and ARM architectures. SimAnMo is also employed to generate models of four codes which are employed to solve the so-called shortest vector problem. This is an important problem from the field of lattice-based cryptography. We demonstrate the quality of our models with measurements for higher lattice dimensions, as far as it is feasible. Additionally, we highlight inherent problems with models for algorithms with exponential runtime.
开发具有指数运行时行为的程序运行时模型
本文提出了一种生成运行时模型的新方法,其运行时随一个输入参数的值呈指数增长。例如,这些程序对密码分析非常感兴趣,可以分析传统和后量子安全方案的实际安全性。基于轮廓训练运行的模型生成方法建立在开源工具Extra-P中实现的思想之上,并扩展了一类新的模型函数和共享内存并行模拟退火方法,以启发式地确定模型函数的系数。我们的方法在开源软件SimAnMo(模拟退火建模器)中实现。我们通过各种理论和综合的实际测试用例证明,与x86和ARM架构上的标准方法相比,我们的方法提供了非常准确的模型和可靠的预测。SimAnMo还用于生成四种码的模型,用于解决所谓的最短向量问题。这是格密码学领域的一个重要问题。在可行的情况下,我们用更高晶格维度的测量来证明我们模型的质量。此外,我们强调了具有指数运行时间的算法模型的固有问题。
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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