Prof. Daniel Hendler

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The complexity of obstruction-free implementations

Hagit Attiya, Rachid Guerraoui, Danny Hendler, Petr Kuznetsov

Obstruction-free implementations of concurrent objects are optimized for the common case where there is no step contention, and were recently advocated as a solution to the costs associated with synchronization without locks. In this article, we study this claim and this goes through precisely defining the notions of obstruction-freedom and step contention. We consider several classes of obstruction-free implementations, present corresponding generic object implementations, and prove lower bounds on their complexity. Viewed collectively, our results establish that the worst-case operation time complexity of obstruction-free implementations is high, even in the absence of step contention. We also show that lock-based implementations are not subject to some of the time-complexity lower bounds we present.

Publication language English
Journal Journal of the ACM
Volume 56
Issue number 4
Publication status Published - 01.06.2009
24

Keywords

Lower bounds
Memory contention
Perturbable objects
Shared memory
Solo-fast implementations
Step contention

ASJC Scopus subject areas

Software
Control and Systems Engineering
Information Systems
Hardware and Architecture
Artificial Intelligence
Access to Document
10.1145/1538902.1538908
Other files and links
Link to publication in Scopus