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On-chip logic minimization

机译:片上逻辑最小化

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摘要

While Boolean logic minimization is typically used in logic synthesis, logic minimization can be useful in numerous other applications. However, many of those applications, such as Internet Protocol routing table and network access control list reduction, require logic minimization during the application's runtime, and hence could benefit from minimization executing on-chip alongside the application. On-chip minimization can even enable dynamic hardware/software partitioning. We discuss requirements of on-chip logic minimization, and present our new on-chip logic minimization tool, ROCM. We compare with the well-known Espresso logic minimizer and show that ROCM is 10 times smaller, executes 10-20 times faster, and uses 3 times less data memory, with a mere 2% quality penalty, for the routing table and access control list applications. We show that ROCM solves real-sized problems on an ARM7 embedded processor in just seconds.
机译:虽然布尔逻辑最小化通常用于逻辑综合,但是逻辑最小化在许多其他应用程序中可能很有用。但是,许多这样的应用程序,例如Internet协议路由表和网络访问控制列表的减少,都需要在应用程序运行时最小化逻辑,因此可以从与应用程序一起在片上执行的最小化中受益。片上最小化甚至可以实现动态硬件/软件分区。我们讨论了片上逻辑最小化的要求,并介绍了我们新的片上逻辑最小化工具ROCM。我们与著名的Espresso逻辑最小化器进行了比较,结果表明,路由表和访问控制列表的ROCM缩小了10倍,执行速度提高了10-20倍,使用的数据存储量减少了3倍,而质量损失仅为2%应用程序。我们证明ROCM可以在几秒钟内解决ARM7嵌入式处理器上的实际问题。

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