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Gigabyte per second streaming lossless data compression hardware based on a configurable variable-geometry CAM dictionary

机译:基于可配置的可变几何CAM字典的每秒千兆字节流式无损数据压缩硬件

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A high-throughput lossless data compression IP core built around a CAM-based dictionary whose number of available entries and data word width adjust to the characteristics of the incoming data stream is presented. These two features enhance model adaptation to the input data, improving compression efficiency, and enable greater throughputs as a multiplicity of bytes can be processed per cycle. A parsing mechanism adjusts the width of dictionary words to natural words while the length of the dictionary grows from an initial empty state to a maximum value defined as a run-time configuration parameter. The compressor/decompressor architecture was prototyped on an FPGA-based PCI board. An ASIC hard-macro was subsequently implemented and achieved a throughput of more than 1 gigabyte per second when clocking at 277 MHz on a high-performance, 0.13 (mu)m, eight-layer copper CMOS process.
机译:提出了一种基于基于CAM的字典构建的高吞吐量无损数据压缩IP内核,该字典的可用条目数和数据字宽可根据传入数据流的特性进行调整。这两个功能增强了模型对输入数据的适应性,提高了压缩效率,并且由于每个周期可以处理多个字节,因此可以实现更大的吞吐量。当字典的长度从初始的空状态增加到定义为运行时配置参数的最大值时,解析机制会将字典词的宽度调整为自然词。压缩器/解压缩器架构是在基于FPGA的PCI板上原型化的。随后实现了ASIC硬宏,当在高性能,0.13μm的八层铜CMOS工艺上以277 MHz进行时钟传输时,吞吐量达到了每秒1 GB以上。

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