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Beyond the arithmetic constraint: depth-optimal mapping of logic chains in LUT-based FPGAs

机译:超越算法约束:基于LUT的FPGA中逻辑链的深度优化映射

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Look-up table based FPGAs have migrated from a niche technology for design prototyping to a valuable end-product component and, in some cases, a replacement for general purpose processors and ASICs alike. One way architects have bridged the performance gap between FPGAs and ASICs is through the inclusion of specialized components such as multipliers, RAM modules, and microcontrollers. Another dedicated structure that has become standard in reconfigurable fabrics is the arithmetic carry chain. Currently, it is only used to map arithmetic operations as identified by HDL macros. For non-arithmetic operations, it is an idle but potentially powerful resource >This work presents ChainMap, a polynomial-time delay-optimal technology mapping algorithm for the creation of generic logic chains in LUT-based FPGAs. ChainMap requires no HDL macros be preserved through the design flow. It creates logic chains, both arithmetic and non-arithmetic, in an arbitrary Boolean network whenever depth increasingnodes are encountered. Use of the chain is not reserved for arithmetic, but rather any set of gates exhibiting similar characteristics. By using the carry chain as a generic, near zero-delay adjacent cell interconnection structure an average optimal speedup of 1.4x is revealed, and an average relaxed speedup of 1.25x can be realized simultaneously with a 0.95x LUT utilization decrease>>> af++ US8661394B1 . 2014-02-25

机译:可重构结构中逻辑链的深度最佳映射

  • 4. Reconfigurable arithmetic logic block array for FPGAs [P] . 外国专利: US2003055852A1 . 2003-03-20

    机译:适用于FPGA的可重配置算术逻辑块阵列

  • 5. DELAY OPTIMAL COMPRESSOR TREE SYNTHESIS FOR LUT-BASED FPGAS [P] . 外国专利: US2011153709A1 . 2011-06-23

    机译:基于LUT的FPGA的延迟最佳压缩树合成

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