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Enabling Fine-Grain Restricted Coset Coding Through Word-Level Compression for PCM

机译:通过字级压缩为PCM启用细粒度受限陪集编码

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Phase change memory (PCM) has recently emerged as a promising technology to meet the fast growing demand for large capacity memory in computer systems, replacing DRAM that is impeded by physical limitations. Multi-level cell (MLC) PCM offers high density with low per-byte fabrication cost. However, despite many advantages, such as scalability and low leakage, the energy for programming intermediate states is considerably larger than programming single-level cell PCM. In this paper, we study encoding techniques to reduce write energy for MLC PCM when the encoding granularity is lowered below the typical cache line size. We observe that encoding data blocks at small granularity to reduce write energy actually increases the write energy because of the auxiliary encoding bits. We mitigate this adverse effect by 1) designing suitable codeword mappings that use fewer auxiliary bits and 2) proposing a new Word-Level Compression (WLC) which compresses more than 91% of the memory lines and provides enough room to store the auxiliary data using a novel restricted coset encoding applied at small data block granularities. Experimental results show that the proposed encoding at 16-bit data granularity reduces the write energy by 39%, on average, versus the leading encoding approach for write energy reduction. Furthermore, it improves endurance by 20% and is more reliable than the leading approach. Hardware synthesis evaluation shows that the proposed encoding can be implemented on-chip with only a nominal area overhead.
机译:相变存储器(PCM)最近已成为一种有前途的技术,可以满足对计算机系统中大容量存储器的快速增长的需求,取代受物理限制的DRAM。多级单元(MLC)PCM具有高密度且每字节的制造成本低。但是,尽管有许多优点,例如可伸缩性和低泄漏,但是用于编程中间状态的能量要比对单级单元PCM进行编程的能量大得多。在本文中,我们研究了当编码粒度降低到典型高速缓存行大小以下时减少MLC PCM写入能量的编码技术。我们观察到,由于辅助编码位的缘故,以小粒度编码数据块以减少写入能量实际上增加了写入能量。我们通过1)设计使用较少辅助位的合适码字映射和2)提出新的字级压缩(WLC)来压缩这种不利影响,该字级压缩(WLC)压缩超过91%的存储线并提供足够的空间来存储辅助数据使用适用于较小数据块粒度的新颖受限陪集编码。实验结果表明,与领先的减少写入能量的编码方法相比,建议的16位数据粒度编码平均可将写入能量减少39%。此外,它比传统方法提高了20%的耐久性,并且更可靠。硬件综合评估表明,所建议的编码可以在片上以标称面积开销实现。

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