Semantics-based concurrency control: Beyond commutativity

B. R. Badrinath, K. Ramamritham
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引用次数: 250

Abstract

The concurrency of transactions executing on atomic data types can be enhanced through the use of semantic information about operations defined on these types. Hitherto, commutativity of operations has been exploited to provide enhanced concurrency while avoiding cascading aborts. We have identified a property known as recoverability which can be used to decrease the delay involved in processing non-commuting operations while still avoiding cascading aborts. When an invoked operation is recoverable with respect to an uncommitted operation, the invoked operation can be executed by forcing a commit-dependency between the invoked operation and the uncommitted operation; the transaction invoking the operation will not have to wait for the uncommitted operation to abort or commit. Further, this commit dependency only affects the order in which the operations should commit, if both commit; if either operation aborts, the other can still commit thus avoiding cascading aborts. To ensure the serializability of transactions, we force the recoverability relationship between transactions to be acyclic.
基于语义的并发控制:超越交换性
通过使用在原子数据类型上定义的操作的语义信息,可以增强在原子数据类型上执行的事务的并发性。到目前为止,操作的交换性已经被用来提供增强的并发性,同时避免级联中止。我们已经确定了一种被称为可恢复性的属性,它可以用来减少处理非通勤操作所涉及的延迟,同时仍然避免级联中止。当一个被调用的操作相对于一个未提交的操作是可恢复的,被调用的操作可以通过在被调用的操作和未提交的操作之间强制一个提交依赖来执行;调用该操作的事务不必等待未提交的操作中止或提交。此外,如果两个操作都提交,则此提交依赖关系仅影响操作提交的顺序;如果其中一个操作终止,另一个操作仍然可以提交,从而避免了级联终止。为了确保事务的可序列化性,我们强制事务之间的可恢复性关系是无循环的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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