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Non-volatile memory through customized key-value stores

Published: 20 June 2016 Publication History

Abstract

No abstract available.

References

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BAILEY, K. A., HORNYACK, P., CEZE, L., GRIBBLE, S. D., AND LEVY, H. M. Exploring storage class memory with key value stores. In Workshop on Interactions of NVM/FLASH with Operating Systems and Workloads (2013).
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CHAKRABARTI, D. R., BOEHM, H.-J., AND BHANDARI, K. Atlas: leveraging locks for non-volatile memory consistency. In OOPSLA (2014).
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CHEN, S., AND JIN, Q. Persistent B+-trees in non-volatile main memory. VLDB 8, 7 (Feb. 2015), 786-797.
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COBURN, J., CAULFIELD, A. M., AKEL, A., GRUPP, L. M., GUPTA, R. K., JHALA, R., AND SWANSON, S. NV-Heaps: Making persistent objects fast and safe with next-generation, non-volatile memories. In ASPLOS (2011).
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CONDIT, J., NIGHTINGALE, E. B., FROST, C., IPEK, E., BURGER, D., LEE, B., AND COETZEE, D. Better I/O through byte-addressable, persistent memory. In SOSP (2009).
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DULLOOR, S. R., KUMAR, S., KESHAVAMURTHY, A., LANTZ, P., REDDY, D., SANKARAN, R., AND JACKSON, J. System software for persistent memory. In EUROSYS (2014).
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GILES, E., DOSHI, K., AND VARMAN, P. Bridging the programming gap between persistent and volatile memory using WrAP. In ACM International Conference on Computing Frontiers (Oct. 2013). Article 30.
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GILES, E., DOSHI, K., AND VARMAN, P. SoftWrAP: A lightweight framework for transactional support of storage class memory. In MSST (2015).
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GUERRA, J., MÁRMOL, L., CAMPELLO, D., CRESPO, C., RANGASWAMI, R., AND WEI, J. Software persistent memory. In ATC (2012).
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MORARU, I., ANDERSEN, D. G., KAMINSKY, M., TOLIA, N., RANGANATHAN, P., AND BINKERT, N. Consistent, durable, and safe memory management for byte-addressable non volatile main memory. In TRIOS (Nov. 2013).
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PELLEY, S., CHEN, P. M., AND WENISCH, T. F. Memory persistency. In ISCA (2014).
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VENKATARAMAN, S., TOLIA, N., RANGANATHAN, P., AND CAMPBELL, R. H. Consistent and durable data structures for non-volatile byte-addressable memory. In FAST (2011).
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VOLOS, H., TACK, A. J., AND SWIFT, M. M. Mnemosyne: Lightweight persistent memory. In ASPLOS (2011).
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Cited By

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  • (2019)JanusProceedings of the 46th International Symposium on Computer Architecture10.1145/3307650.3322206(143-156)Online publication date: 22-Jun-2019
  • (2018)Exploring and optimizing chipkill-correct for persistent memory based on high-density NVRAMsProceedings of the 51st Annual IEEE/ACM International Symposium on Microarchitecture10.1109/MICRO.2018.00063(710-723)Online publication date: 20-Oct-2018

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cover image Guide Proceedings
HotStorage'16: Proceedings of the 8th USENIX Conference on Hot Topics in Storage and File Systems
June 2016
120 pages

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  • VMware
  • NetApp
  • Google Inc.
  • IBMR: IBM Research
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Published: 20 June 2016

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View all
  • (2019)JanusProceedings of the 46th International Symposium on Computer Architecture10.1145/3307650.3322206(143-156)Online publication date: 22-Jun-2019
  • (2018)Exploring and optimizing chipkill-correct for persistent memory based on high-density NVRAMsProceedings of the 51st Annual IEEE/ACM International Symposium on Microarchitecture10.1109/MICRO.2018.00063(710-723)Online publication date: 20-Oct-2018

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