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The concurrency control and recovery problem for multilevel update transactions in MLS systems

机译:MLS系统中的多级更新事务的并发控制和恢复问题

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The problem is addressed of a transaction reading and writing data at multiple classification levels in a multilevel secure (MLS) database. The authors refer to such transactions as multilevel update transactions. They show that no scheduler can ensure atomicity of multilevel update transactions in the presence of transaction aborts and at the same time be secure. There are essentially two ways of scheduling multilevel update transactions. The first method, which ensures strong atomicity, involves delaying low-level subtransactions until the fats of the sibling high-level subtransactions are known. The second scheme, which ensures only semantic atomicity, involves compensating the effects of any committed subtransactions. Analysis of these schemes indicates that the compensation approach leads to lower covert channel bandwidths. A concurrency control and recovery protocol based on compensation is proposed for multilevel update transactions. The security and correctness of the protocol is considered.
机译:问题是在多级安全(MLS)数据库中的多个分类级别的事务读取和写入数据的解决。作者将此类交易称为多级更新事务。他们表明,没有调度程序可以在存在事务中止的情况下确保多级更新事务的原子性,同时是安全的。基本上有两种调度多级更新事务的方法。确保强烈原子性的第一种方法涉及延迟低水平的亚帧,直到已知的兄弟高级亚重组的脂肪是已知的。确保仅是语义原子的第二种方案涉及补偿任何犯下的次级分子的效果。对这些方案的分析表明补偿方法导致较低的封面通道带宽。提出了一种基于补偿的并发控制和恢复协议,用于多级更新事务。考虑了协议的安全性和正确性。

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