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RC-OCP: Reverse coordinated optimized commit protocol

机译:RC-OCP:反向协调的优化提交协议

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With the growth of trends in computing and requirement for developing a reliable computing environment the need for performing tasks in distributed manner has gained much importance. Atomic commit protocols (ACP) are used to preserve the ACID property in distributed systems. Two-Phase Commit (2PC) is most widely used but the blocking of sites is undesirable as these sites may be holding locks on the resources. As alternative, non-blocking ACP has been suggested: This nonblocking protocol is Three-Phase Commit (3PC) protocol which requires an extra phase (pre-commit) to remove blocking state. The existing protocols require so many messages transfer from the coordinator to participants and vice versa during different phases and corresponding increase communication and time complexity and hold the locks acquire by different participants till the end of last phase, forcing other transactions also to be blocked just because of the objects that are locked. All the existing protocols give the same performance for both deferred and immediate consistency constraints databases. Lots of protocols are being proposed and mainly the concentration was to make the 2PC protocol non-blocking or to minimize the blocking possibilities in 2PC. There has been a renewed interest in developing and optimization of more efficient ACPs. This paper is an effort to propose a new technique to optimize atomic commit protocols by optimizing voting phase based on deferred and immediate consistency constraints. Also an attempt has been made to propose reduction in communication complexity which will require less number of messages to be shared between coordinator and participants, the cost of execution as well as time delays.
机译:随着计算趋势的增长以及对开发可靠的计算环境的需求,以分布式方式执行任务的需求变得越来越重要。原子提交协议(ACP)用于在分布式系统中保留ACID属性。两阶段提交(2PC)使用最广泛,但不希望对站点进行阻塞,因为这些站点可能会锁定资源。作为替代方案,建议使用非阻塞ACP:该非阻塞协议是三相提交(3PC)协议,该协议需要一个额外的阶段(预提交)来删除阻塞状态。现有协议需要在不同阶段从协调器向参与者传输大量消息,反之亦然,并且相应地增加了通信和时间复杂度,并保持了不同参与者获取的锁直到上一阶段结束,从而迫使其他事务也被阻塞,原因仅在于被锁定的对象。对于延迟和立即一致性约束数据库,所有现有协议都具有相同的性能。提出了许多协议,并且主要集中在使2PC协议无阻塞或使2PC中的阻塞可能性最小化。人们对开发和优化更有效的ACP产生了新的兴趣。本文致力于提出一种新技术,通过基于延迟和立即一致性约束优化投票阶段来优化原子提交协议。还尝试提出降低通信复杂性的方法,这将需要较少数量的消息在协调者和参与者之间共享,执行成本以及时间延迟。

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