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Architectural Support of Multiple Hypervisors over Single Platform for Enhancing Cloud Computing Security

机译:单一平台上多种虚拟机制的架构支持,提升云计算安全性

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This paper presents MultiHvpe, a novel architecture that supports multiple hypervisors (or virtual machine monitors) on a single physical platform by leveraging many-core based cloud-on-chip architecture. A MultiHype platform consists of a control plane and multiple hypervisors created on-demand. each can further create multiple guest virtual machines. Supported at architectural level, a single platform using MultiHype can behave as a distributed system with each hypervi-sor and its virtual machines running independently and concurrently. As a direct consequence, vulnerabilities of one hyper visor or its guest virtual machine can be confined within its own domain, which makes the platform more resilient to malicious attacks and failures in a cloud environment. Towards defending against resource exhaustion attacks, MultiHype further implements a new cache eviction policy and memory management scheme for preventing resource monopolization on shared cache, and defending against denial of resource exploits on physical memory resource launched from malicious virtual machines on shared platform. We use Bochs emulator and cycle based x86 simulation to evaluate the effectiveness and performance of MultiHype.
机译:本文介绍了多个新颖的架构,它通过利用基于许多基于核心的云的云架构来支持单个物理平台上的多个虚拟机管理程序(或虚拟机监视器)。多个平台由控制平面组成,并创建了按需创建的多个虚拟机管理程序。每个都可以进一步创建多个访客虚拟机。在架构级别支持,使用多个类型的平台可以表现为具有每个HyperVi-SOR的分布式系统及其虚拟机独立和同时运行。作为一种直接后果,一个超遮阳板或其访客虚拟机的漏洞可以限制在自己的域中,这使得平台更有弹性对云环境中的恶意攻击和失败。为了防止资源耗尽攻击,多个类型进一步实现了一种新的缓存驱逐策略和内存管理方案,用于防止共享缓存的资源垄断,并防止拒绝资源利用在共享平台上的恶意虚拟机启动的物理内存资源上。我们使用Bochs仿真器和基于循环的X86仿真来评估多个型的效果和性能。

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