扩展了已有的软件可信性证据模型,引入了运行时软件可信证据,从而提供了更为全面的软件可信证据模型.为了提供客观、真实、全面的可信证据,提出了一种基于可信计算技术的软件运行时可信证据收集机制.利用可信平台模块(trusted platform module,简称TPM)提供的安全功能,结合“最新加载技术(late launch)”,在操作系统层引入了一个可信证据收集代理此代理利用TPM,可以客观地收集目标应用程序的运行时可作为软件可信证据的信息,并保障可信证据本身的可信性.该可信证据收集机制具有良好的可扩展性,能够支持面向不同应用的信任评估模型.基于Linux Security Module,在Linux中实现了一个可信证据收集代理的原型.基于该原型,分析了一个分布式计算客户端实例的相关可信属性,并且分析了可信证据收集代理在该应用实例中的性能开销.该应用实例验证了该方案的可行性.
This paper extends the software trustworthiness evidence framework to include the runtime software trustworthiness evidence. To collect software trustworthiness evidence in an objective, genuine and comprehensive way, it proposes a runtime software trustworthiness evidence collection mechanism based on trusted computing technology. Based on the features provided by TPM (trusted platform module), as well as the late launch techrtology, a trusted evidence collection agent is introduced in an operating system kernel. The agent can securely monitor executing programs and collect their trustworthiness evidence accordingly. The agent also provides some trusted services for programs to collect application specific evidences and guarantees the trustworthiness of these evidences. This mechanism has good scalability to support various applications and software trustworthiness evaluation models. This paper also implements a prototype for the agent based on Linux security model in Linux. Based on the prototype, it studies the trustworthiness evaluation for executing a client program in a distributed computing environment. In this application, the performance of prototype is studied, and the feasibility of this approach is demonstrated.