Black-box Concurrent Data Structures for NUMA Architectures

Author:

Calciu Irina1,Sen Siddhartha2,Balakrishnan Mahesh3,Aguilera Marcos K.1

Affiliation:

1. VMware Research, Palo Alto, CA, USA

2. Microsoft Research, New York , NY, USA

3. Yale University, New Haven, CT, USA

Abstract

High-performance servers are Non-Uniform Memory Access (NUMA) machines. To fully leverage these machines, programmers need efficient concurrent data structures that are aware of the NUMA performance artifacts. We propose Node Replication (NR), a black-box approach to obtaining such data structures. NR takes an arbitrary sequential data structure and automatically transforms it into a NUMA-aware concurrent data structure satisfying linearizability. Using NR requires no expertise in concurrent data structure design, and the result is free of concurrency bugs. NR draws ideas from two disciplines: shared-memory algorithms and distributed systems. Briefly, NR implements a NUMA-aware shared log, and then uses the log to replicate data structures consistently across NUMA nodes. NR is best suited for contended data structures, where it can outperform lock-free algorithms by 3.1x, and lock-based solutions by 30x. To show the benefits of NR to a real application, we apply NR to the data structures of Redis, an in-memory storage system. The result outperforms other methods by up to 14x. The cost of NR is additional memory for its log and replicas.

Publisher

Association for Computing Machinery (ACM)

Subject

Computer Graphics and Computer-Aided Design,Software

Reference62 articles.

1. http://redis.io. http://redis.io.

2. Dmitry Vyukov. Distributed Reader-Writer Mutex. http://www.1024cores.net/home/ lock-free-algorithms/reader-writer-problem/ distributed-reader-writer-mutex. Dmitry Vyukov. Distributed Reader-Writer Mutex. http://www.1024cores.net/home/ lock-free-algorithms/reader-writer-problem/ distributed-reader-writer-mutex.

3. http://goog-perftools.sourceforge.net/doc/tcmalloc.html. http://goog-perftools.sourceforge.net/doc/tcmalloc.html.

4. M. K. Aguilera. Thread-local malloc. https://github.com/mkaguilera/tmalloc. M. K. Aguilera. Thread-local malloc. https://github.com/mkaguilera/tmalloc.

5. Universal constructions for large objects

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