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Timed Migration and Interaction with Access Permissions

机译:定时迁移和与访问权限的交互

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We introduce and study a process algebra able to model the systems composed of processes (agents) which may migrate within a distributed environment comprising a number of distinct locations. Two processes may communicate if they are present in the same location and, in addition, they have appropriate access permissions to communicate over a channel. Access permissions are dynamic, and processes can acquire new access permissions or lose some existing permissions while migrating from one location to another. Timing constraints coordinate and control both the communication between processes and migration between locations. We completely characterise those situations when a process is always guaranteed to possess safe access permissions. The consequences of such a result are twofold. First, we are able to validate systems where one does not need to check (at least partially) access permissions as they are guaranteed not to be violated, improving efficiency of implementation. Second, one can design systems in which processes are not blocked (deadlocked) because of the lack of dynamically changing access permissions.
机译:我们介绍和研究一个过程代数,它能够对由过程(代理)组成的系统进行建模,这些系统可能在包含多个不同位置的分布式环境中迁移。如果两个进程位于相同的位置,并且它们具有适当的访问权限以通过通道进行通信,则可以进行通信。访问权限是动态的,当从一个位置迁移到另一位置时,进程可以获取新的访问权限或丢失一些现有权限。时间约束可以协调和控制流程之间的通信以及位置之间的迁移。当进程始终保证拥有安全访问权限时,我们将完全描述这些情况。这种结果的后果是双重的。首先,我们能够验证不需要检查(至少部分检查)访问权限的系统,因为可以确保不违反访问权限,从而提高了实现效率。其次,可以设计一种系统,在该系统中,由于缺少动态更改的访问权限而不会阻塞(解除锁定)进程。

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