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Compiler-Assisted STT-RAM-Based Hybrid Cache for Energy Efficient Embedded Systems

机译:基于编译器的基于STT-RAM的混合缓存,用于节能嵌入式系统

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Hybrid caches consisting of static RAM (SRAM) and spin-torque transfer (STT)-RAM have been proposed recently for energy efficiency. To explore the advantages of hybrid cache, most of the management strategies for hybrid caches employ migration-based techniques to dynamically move write-intensive data from STT-RAM to SRAM. These techniques involve additional access operations, and thus lead to extra overheads. In this paper, we propose two compilation-based approaches to improve the energy efficiency and performance of STT-RAM-based hybrid cache by reducing the migration overheads. The first approach, migration-aware data layout, is proposed to reduce the migrations by rearranging the data layout. The second approach, migration-aware cache locking, is proposed to reduce the migrations by locking migration-intensive memory blocks into SRAM part of hybrid cache. Furthermore, experiments show that these two methods can be combined to reduce more migrations. The reduction of migration overheads can improve the energy efficiency and performance of STT-RAM-based hybrid cache. Experimental results show that, combining these two methods, on average, the number of write operations on STT-RAM is reduced by 17.6%, the number of migrations is reduced by 38.9%, the total dynamic energy is reduced by 15.6%, and the total access latency is reduced by 13.8%.
机译:为了提高能源效率,最近提出了由静态RAM(SRAM)和自旋扭矩传输(STT)-RAM组成的混合缓存。为了探索混合高速缓存的优势,大多数混合高速缓存的管理策略都采用基于迁移的技术,以将写密集型数据从STT-RAM动态移动到SRAM。这些技术涉及额外的访问操作,因此导致额外的开销。在本文中,我们提出了两种基于编译的方法,通过减少迁移开销来提高基于STT-RAM的混合缓存的能效和性能。提出了第一种方法,即迁移感知数据布局,以通过重新布置数据布局来减少迁移。提出了第二种方法,即迁移感知缓存锁定,以通过将迁移密集型内存块锁定到混合缓存的SRAM部分中来减少迁移。此外,实验表明,可以将这两种方法结合起来以减少更多的迁移。迁移开销的减少可以提高基于STT-RAM的混合缓存的能效和性能。实验结果表明,结合这两种方法,平均而言,STT-RAM上的写操作数量减少了17.6%,迁移数量减少了38.9%,总动态能量减少了15.6%,总访问延迟减少了13.8%。

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