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Insights into the Fallback Path of Best-Effort Hardware Transactional Memory Systems

机译:洞察最佳硬件交易记忆系统的回力路径

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Current industry proposals for Hardware Transactional Memory (HTM) focus on best-effort solutions (BE-HTM) where hardware limits are imposed on transactions. These designs may show a significant performance degradation due to high contention scenarios and different hardware and operating system limitations that abort transactions, e.g. cache overflows, hardware and software exceptions, etc. To deal with these events and to ensure forward progress, BE-HTM systems usually provide a software fallback path to execute a lock-based version of the code. In this paper, we propose a hardware implementation of an irrevocability mechanism as an alternative to the software fallback path to gain insight into the hardware improvements that could enhance the execution of such a fallback. Our mechanism anticipates the abort that causes the transaction serialization, and stalls other transactions in the system so that transactional work loss is minimized. In addition, we evaluate the main software fallback path approaches and propose the use of ticket locks that hold precise information of the number of transactions waiting to enter the fallback. Thus, the separation of transactional and fallback execution can be achieved in a precise manner. The evaluation is carried out using the Simics/GEMS simulator and the complete range of STAMP transactional suite benchmarks. We obtain significant performance benefits of around twice the speedup and an abort reduction of 50% over the software fallback path for a number of benchmarks.
机译:当前的硬件交易记忆(HTM)的行业建议侧重于最佳精力解决方案(BE-HTM),其中硬件限制对事务施加。由于高竞争方案和中止事务的不同硬件和操作系统限制,这些设计可能表现出显着的性能劣化。缓存溢出,硬件和软件异常等,为了处理这些事件,并确保向前进步,BE-HTM系统通常提供了执行代码的基于锁的版本的软件后备路径。在本文中,我们提出了一种不可撤销机制的硬件实现,作为软件回退路径的替代,以获得能够增强执行这种回退的硬件改进的硬件改进。我们的机制预计导致交易序列化的中止,并停止系统中的其他事务,以便最小化交易工作损失。此外,我们评估主软件后退路径方法,并提出使用票锁,该锁锁定了等待进入后退的事务数量的精确信息。因此,可以以精确的方式实现交易和后退执行的分离。评估使用SIMICS / GEMS模拟器和全系列邮票交易套件基准进行进行。我们获得了大约两倍于加速的大约两倍,并且在软件回退路径中减少了50%的备用路径,以获得许多基准。

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