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Fast Persistent Heap Based on Non-Volatile Memory

机译:基于非易失性内存的快速持久堆

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New volatile memory (e.g. Phase Change Memroy) presents fast access, large capacity, byte-addressable, and non-volatility features. These features will bring impacts on the design of current software system. It has become a hot research topic of how to manage it and provide what kind of interface for upper application to use it. This paper proposes FP-Heap. FP-Heap supports direct access to non-volatile memory through a persistent heap interface. With FP-Heap, traditional persistent object systems can benefit directly from the byte-persistency of non-volatile memory. FP-Heap extends current virtual memory manager (VMM) to manage non-volatile memory and maintain a persistent mapping relationship. Also, FP-Heap offers a lightweight transaction mechanism to support atomic update of persistent data, a simple namespace to facilitate data indexing, and a basic access control mechanism to support data sharing. Compared with previous work Mnemosyne, FP-Heap achieves higher performance by its customized VMM and optimized transaction mechanism.
机译:新的易失性存储器(例如相变存储器)具有快速访问,大容量,字节可寻址和非易失性的特点。这些功能将对当前软件系统的设计产生影响。如何管理它以及为上层应用程序提供什么样的接口已经成为一个热门研究课题。本文提出了FP-Heap。 FP-Heap支持通过持久堆接口直接访问非易失性内存。使用FP-Heap,传统的持久对象系统可以直接从非易失性存储器的字节持久性中受益。 FP-Heap扩展了当前的虚拟内存管理器(VMM),以管理非易失性内存并维护持久的映射关系。而且,FP-Heap提供了一种轻量级的事务机制来支持持久性数据的原子更新,一个简单的名称空间来促进数据索引,以及一个基本的访问控制机制来支持数据共享。与以前的Mnemosyne工作相比,FP-Heap通过其定制的VMM和优化的事务处理机制实现了更高的性能。

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