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High-Speed Programmable Logic Array Adders

机译:高速可编程逻辑阵列加法器

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Programmable Logic Array (PLA) adders are described which perform an addition in one cycle with a single pass through a PLA and require a reasonable number of product terms for an 8-, 16-, or even a 32-bit adder. The PLA features two- bit input decoders feeding an AND array followed by an OR array whose outputs are pairwise EXCLUSIVE-ORed. Carry-look-ahead adder equations, adapted to the PLA to require relatively few product terms, are adjusted for maximum sharing of product terms. The number of unique product terms is a relative measure of one of the physical dimensions of the PLA. Equations for contiguous sum bits are grouped into strings, each using a common input carry. A procedure optimally assigns sum bits to strings to further minimize the total number of unique product terms. The methods are extended to PLAs with decoders of increased inputs and substantially reduced product terms. They can serve as dedicated macro functions on a chip, using special decoders relevant to adders. As a result, the other PLA dimension comprising the number of outputs from all input decoders increases only moderately, and can even decrease, with larger decoders. Finally, the PLA adder can be further substantially compressed by splitting the OR array into two parts such that a row of the AND array is shared between two product terms, and an OR array column is shared between two sums of product terms.
机译:描述了可编程逻辑阵列(PLA)加法器,它们在一个周期内一次通过PLA执行加法,并且对于8位,16位甚至32位加法器需要合理数量的乘积项。 PLA具有两位输入解码器,输入一个AND数组,然后是一个OR数组,其输出是成对异或的。适应PLA要求相对较少的乘积项的提前携带加法器方程式进行了调整,以实现乘积项的最大共享。唯一乘积项的数量是PLA物理尺寸之一的相对度量。连续和位的方程式被分组为字符串,每个方程式都使用一个公共输入进位。一个过程可以最佳地将总和分配给字符串,以进一步减少唯一乘积项的总数。该方法扩展到具有增加的输入和实质上减少的乘积项的解码器的PLA。使用与加法​​器相关的特殊解码器,它们可以用作芯片上的专用宏功能。结果,包括来自所有输入解码器的输出数量的另一个PLA维度仅会适度增加,甚至在使用更大的解码器时可能会减少。最后,可以通过将OR数组分为两部分来进一步压缩PLA加法器,以便在两个乘积项之间共享AND阵列的行,并且在两个乘积项之和之间共享OR阵列列。

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