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Resource-Efficient SRAM-Based Ternary Content Addressable Memory

机译:资源高效的基于SRAM的三态内容可寻址存储器

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Static random access memory (SRAM)-based ternary content addressable memory (TCAM) offers TCAM functionality by emulating it with SRAM. However, this emulation suffers from reduced memory efficiency while mapping the TCAM table on SRAM units. This is due to the limited capacity of the physical addresses in the SRAM unit. This brief offers a novel memory architecture called a resource-efficient SRAM-based TCAM (REST), which emulates TCAM functionality using optimal resources. The SRAM unit is divided into multiple virtual blocks to store the address information presented in the TCAM table. This approach virtually increases the overall address space of the SRAM unit, mapping a greater portion of the TCAM table in SRAM and increasing the overall emulated TCAM bits/SRAM at the cost of reduced throughput. A 72 × 28-bit REST consumes only one 36-kbit SRAM and a few distributed RAMs via implementation on a Xilinx Kintex-7 field-programmable gate array. It uses only 3.5% of the memory resources compared with a conventional SRAM-based TCAM (hybrid-partitioned TCAM).
机译:基于静态随机存取存储器(SRAM)的三态内容可寻址存储器(TCAM)通过用SRAM模拟来提供TCAM功能。但是,在将TCAM表映射到SRAM单元时,这种仿真会降低存储效率。这是由于SRAM单元中物理地址的容量有限。本简介提供了一种新颖的存储器架构,称为资源高效的基于SRAM的TCAM(REST),它可以使用最佳资源来模拟TCAM功能。 SRAM单元分为多个虚拟块,以存储TCAM表中显示的地址信息。这种方法实际上增加了SRAM单元的总地址空间,在SRAM中映射了大部分TCAM表,并以降低吞吐量的代价增加了总体模拟的TCAM位/ SRAM。通过在Xilinx Kintex-7现场可编程门阵列上实施,一个72×28位REST仅消耗一个36 kbit SRAM和一些分布式RAM。与传统的基于SRAM的TCAM(混合分区TCAM)相比,它仅使用3.5%的内存资源。

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