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Controller architecture for low-latency access to phase-change memory in OpenPOWER systems

机译:用于OpenPOWER系统中低延迟访问相变存储器的控制器架构

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Novel forms of nonvolatile memory, such as phase-change memory (PCM), promise low latency and small granularity of read and write access at high storage density. They also feature very high endurance. These characteristics make them highly desirable for emerging high-capacity (hybrid) memory applications such as in-memory databases and in-memory processing. In this work, we present the architecture, implementation and experimental performance results of an FPGA-based PCM memory controller for OpenPOWER servers. The memory controller leverages the Coherent Accelerator Processor Interface (CAPI) of the POWER processor in order to offer low-latency access to the CPU memory space. In addition, the memory controller implements an efficient management protocol that supports a dynamic size of pending read and write requests in order to offer high bandwidth under mixed-type workloads. We describe the architecture and implementation details of the memory controller and we demonstrate its performance using a prototype platform based on different types of OpenPOWER servers equipped with CAPI-enabled FPGA cards. The developed PCM controller is evaluated in terms of sustained data rates (MBps) and access latency (us). Experimental results are based on legacy commercial 90nm PCM chips as well as on accurate HW emulation of next generation PCM chips.
机译:诸如相变存储器(PCM)之类的新型非易失性存储器保证了高存储密度下的低延迟和较小的读写访问粒度。它们还具有很高的耐力。这些特性使它们非常适合新兴的大容量(混合)内存应用程序,例如内存数据库和内存处理。在这项工作中,我们介绍了用于OpenPOWER服务器的基于FPGA的PCM存储器控制器的架构,实现和实验性能结果。内存控制器利用POWER处理器的一致性加速器处理器接口(CAPI),以提供对CPU内存空间的低延迟访问。此外,内存控制器实现了一种有效的管理协议,该协议支持动态大小的未决读写请求,以便在混合类型的工作负载下提供高带宽。我们描述了内存控制器的体系结构和实现细节,并使用基于原型平台的原型平台展示了其性能,该原型平台基于配备有支持CAPI的FPGA卡的不同类型的OpenPOWER服务器。根据持续数据速率(MBps)和访问延迟(us)对开发的PCM控制器进行评估。实验结果基于传统的商用90nm PCM芯片以及下一代PCM芯片的精确硬件仿真。

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