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Java Card Performance Optimization of Secure Transaction Atomicity based on Increasing the Class Field Locality

机译:基于增加类现场局部性的java卡性能优化安全交易原子

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Java Cards are embedded systems, very often implemented as smart cards. They are used in banking, e-government, telecommunication, and ticketing. Due to these use cases they have to provide a wide range of security mechanisms and a high performance in relation to the available hardware cost. One of these security features is the transaction mechanism. It ensures that data in persistent memory stays consistent in case of the execution of the application is interrupted unexpectedly by e.g. loss of power. Such transaction mechanisms are very time consuming. Therefore, we1 propose a caching mechanisM for transactions. The mechanism uses a buffer located in RAM and reduces costly write cycles into persistent memory without any loss of security. In order to further increase the performance of this caching mechanism, we additionally introduce a concept to maximize the locality of selected Java fields which are written very often.
机译:Java卡是嵌入式系统,通常以智能卡实现。它们用于银行,电子政务,电信和票务。由于这些用例,他们必须提供广泛的安全机制和高性能,而具有可用的硬件成本。其中一个安全功能是事务机制。它确保在执行应用程序的情况下,持久存储器中的数据保持一致意外地中断。失去权力。这种交易机制非常耗时。因此,WE1提出了一种交易的缓存机制。该机制使用位于RAM中的缓冲区,并将昂贵的写入周期减少到持久存储器中,而不会丢失安全性。为了进一步提高这种缓存机制的性能,我们还介绍了一个概念,以最大化所选择的Java字段的局部性经常写入。

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