虚拟设备的符号执行

Kai Cong, Fei Xie, Li Lei
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引用次数: 28

摘要

设备驱动程序是计算机系统故障的主要来源。因此,提高驱动可靠性将大大提高整个系统的可靠性。然而,驱动程序的开发在很大程度上必须等到设备的第一个稳定版本可用。这种依赖关系通常没有足够的时间进行驱动程序验证。最近,虚拟机和虚拟设备已经进入了早期驱动程序的开发和验证。虚拟设备甚至在真实设备可用之前就可以进行驱动程序开发,并带来完全的可观察性和跟踪能力,从而避开真实设备。我们提出了一种对虚拟设备进行静态分析的方法,这是实现可观察性和可追溯性的核心。这种方法通过符号执行来练习虚拟设备的设备模型。根据符号化执行的结果,对通过设备模型的每条路径生成一个具体的测试用例。我们已经将这种方法应用于五种网络适配器的虚拟设备。结果表明,该方法是可行、高效、实用的。
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Symbolic Execution of Virtual Devices
Device drivers are a principal source of failures in computer systems. Therefore, improving driver reliability greatly improves overall system reliability. However, driver development largely has to wait until a first stable version of the device becomes available. This dependency often leaves not enough time for driver validation. Recently, virtual machines and virtual devices have found their way into early driver development and validation. Virtual devices enable driver development even before real devices become available and bring complete observability and trace ability that evade real devices. We present an approach to static analysis of virtual devices which is central to achieving observability and traceability. This approach exercises the device model of a virtual device by symbolic execution. Based on the result of symbolic execution, a concrete test case is generated for each path through the device model, which has been exercised. We have applied this approach to virtual devices of five network adapters. The results show that this approach is feasible, efficient, and useful.
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