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A metal-only-ECO solver for input-slew and output-loading violations

机译:仅用于输入 - 弹簧和输出加载违规的金属ECO求解器

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To shorten the time-to-market and reduce the expensive cost of photomasks in advance process technologies, metal-only ECO has become a practical and attractive solution to handle incremental design changes. Due to limited spare cells in metal-only ECO, the new added netlist may often violate the input-slew and outputloading constraints and, in turn, delay or even fail the timing closure. This paper proposes a framework, named MOESS, to solve the input-slew and output-loading violations by connecting spare cells onto the violated nets as buffers. MOESS provides two buffer insertion schemes performed sequentially to minimize the number of inserted buffers and then to solve timing violations if there is any. This framework has been silicon-validated through industrial designs with more than 1-million instances. The experimental results demonstrate that MOESS can solve more violations with less inserted buffers and less CPU runtime compared to an EDA vendor's solution. The whole framework is builtbased on a commercial APR tool and can be ported to any other APR tool offering open access to its design database.
机译:为了缩短上市时间并降低预先过程技术的昂贵的光掩模成本,仅限金属生态已成为处理增量设计变化的实用和有吸引力的解决方案。由于金属ECO中的备用电池有限,新增的NetList可能经常违反输入 - 拆卸和输出量度约束,又延迟甚至失败时机闭合。本文提出了一个名为Moess的框架,通过将备用网作为缓冲区连接到违规的网上来解决输入 - 扫描和输出加载违规。 Moess提供了两个缓冲区插入方案,以便最小化插入的缓冲区的数量,然后求解定时违规,如果有的话。这一框架通过工业设计已经硅验证,实例超过100万。实验结果表明,与EDA供应商的解决方案相比,Moess可以通过较少插入的缓冲区和较少的CPU运行时解决更多违规行为。整个框架是在商业APR工具上构建的,可以移植到任何其他APR工具,提供对其设计数据库的开放访问。

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