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MemGuard: A Low Cost and Energy Efficient Design to Support and Enhance Memory System Reliability

机译:MEMGUARD:低成本和节能设计,支持和提高内存系统可靠性

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Memory system reliability is increasingly a concern as memory cell density and capacity continue to grow. The conventional approach is to use redundan t memory bits for error detection and correction, with significant storage, cost and power overheads. In this paper, we propose a novel, system-level scheme called MemGuard for memory error detection. With OS-based checkpointing, it is also able to recover program execution from memory errors. The memory error detection of MemGuard is motivated by memory integrity verification using log hashes. It is much stronger than SECDED in error detection, incurs negligible hardware cost and energy overhead and no storage overhead, and is compatible with various memory organizations. It may play the role of ECC memory in consumer-level computers and mobile devices, without the shortcomings of ECC memory. In server computers, it may complement SECDED ECC or Chipkill Correct by providing even stronger error detection. We have comprehensively investigated and evaluated the feasibility and reliability of MemGuard. We show that using an incremental multiset hash function and a non-cryptographic hash function, the performance and energy overheads of MemGuard are negligible. We use the mathematical deduction and synthetic simulation to prove that MemGuard is robust and reliable.
机译:存储器系统可靠性越来越受到记忆单元密度和容量继续生长的关注。传统方法是使用Redundan T存储器比特进行错误检测和校正,具有显着的存储,成本和功率开销。在本文中,我们提出了一种名为Memguard的新颖,系统级方案,用于记忆错误检测。使用基于OS的检查点,它还能够从内存错误中恢复程序执行。 Memguard的内存错误检测通过使用LOG散列的内存完整性验证激励。它比SECDED在错误检测中强大,硬件成本和能量开销不计,并且没有存储开销,并且与各种内存组织兼容。在没有ECC内存的缺点,它可能在消费者级计算机和移动设备中发挥ECC内存的作用。在服务器计算机中,它可以通过提供更强烈的错误检测来补充SECDED ECC或Chipkill。我们全面调查并评估了Memguard的可行性和可靠性。我们表明,使用增量多立方哈希函数和非加密哈希函数,梅内卡特的性能和能量开销可以忽略不计。我们使用数学扣除和综合模拟来证明默认魔鬼是坚固可靠的。

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