P-INSPECT: Architectural Support for Programmable Non-Volatile Memory Frameworks
Apostolos Kokolis, Thomas Shull, Jian Huang, Josep Torrellas
Abstract
The availability of user-friendly programming frameworks is key to the success of Non-Volatile Memory (NVM). Unfortunately, most current NVM frameworks rely heavily on user intervention to mark persistent objects and even persistent writes. This not only complicates NVM programming, but also introduces potential bugs. To address these issues, researchers have proposed Persistence by Reachability frameworks, which require minimal user intervention. However, these frameworks are slow because their runtimes have to perform checks at program load/store operations, and move data structures between DRAM and NVM during program execution.
In this paper, we introduce P-INSPECT, a novel hardware architecture targeted to speeding up persistence by reachability NVM programming frameworks. P-INSPECT uses bloom-filter hardware to perform various checks in a transparent and efficient manner. It also provides hardware for low-overhead persistent writes. Our simulation-based evaluation running a state-of-the-art persistence by reachability framework shows that P-INSPECT retains programmability and eliminates most of the overhead. We use real-world applications to demonstrate that, on average, P-INSPECT reduces an application's number of executed instructions by 26% and the execution time by 16%-delivering similar performance to an ideal runtime that has no persistence by reachability overhead.
Ask about this paper
Your agent reads all of it.
Lune indexed this paper to the last equation, along with the top-tier papers that cite it. Ask a question and the answer quotes them.
Cited by top-tier papers2
- Capri: Compiler and Architecture Support for Whole-System PersistenceJungi Jeong, Jianping Zeng, Changhee JungHPDC 2022 · 21 citations
- FFCCD: fence-free crash-consistent concurrent defragmentation for persistent memoryYuanchao Xu, Chencheng Ye, Yan Solihin, Xipeng ShenISCA 2022 · 9 citations
Related papers
- TENET: Memory Safe and Fault Tolerant Persistent Transactional MemoryMadhava Krishnan Ramanathan, Diyu Zhou, Wook-Hee Kim, Sudarsun Kannan et al.FAST 2023 · 12 citations
- Stealth-Persist: Architectural Support for Persistent Applications in Hybrid Memory SystemsMazen Al-Wadi, Vamsee Reddy Kommareddy, Clayton Hughes, Simon David Hammond et al.HPCA 2021 · 9 citations
- Prosper: Program Stack Persistence in Hybrid Memory SystemsK. P. Arun, Debadatta Mishra, Biswabandan PandaHPCA 2024 · 1 citation
- Supporting Legacy Libraries on Non-Volatile Memory: A User-Transparent ApproachChencheng Ye, Yuanchao Xu, Xipeng Shen, Xiaofei Liao et al.ISCA 2021 · 9 citations
- Checking robustness to weak persistency modelsHamed Gorjiara, Weiyu Luo, Alex Lee, Guoqing Harry Xu et al.PLDI 2022 · 13 citations
