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  2. ZeroVM - Wikipedia

    en.wikipedia.org/wiki/ZeroVM

    ZeroVM is an open source light-weight virtualization and sandboxing technology. It virtualizes a single process using the Google Native Client platform. Since only a single process is virtualized (instead of a full operating system), the startup overhead is in the order of 5 ms.

  3. Sandy Bridge - Wikipedia

    en.wikipedia.org/wiki/Sandy_Bridge

    Bottom view of a Core i7-2600K. Sandy Bridge is the codename for Intel's 32 nm microarchitecture used in the second generation of the Intel Core processors (Core i7, i5, i3).The Sandy Bridge microarchitecture is the successor to Nehalem and Westmere microarchitecture.

  4. List of IOMMU-supporting hardware - Wikipedia

    en.wikipedia.org/wiki/List_of_IOMMU-supporting...

    The vast majority of Intel server chips of the Xeon E3, Xeon E5, and Xeon E7 product lines support VT-d. The first—and least powerful—Xeon to support VT-d was the E5502 launched Q1'09 with two cores at 1.86 GHz on a 45 nm process. [2]

  5. Comparison of platform virtualization software - Wikipedia

    en.wikipedia.org/wiki/Comparison_of_platform...

    Full-system virtualization (Processor Core ISA + Hardware + External connections) Early embedded software development and integration (from driver to application), Multi-core software debugging and optimization Depending on the system characteristics and the software itself, ranges from faster than real time to slow [citation needed]. Yes Virtuozzo

  6. Virtual 8086 mode - Wikipedia

    en.wikipedia.org/wiki/Virtual_8086_mode

    To use virtual 8086 mode, an operating system sets up a virtual 8086 mode monitor, which is a program that manages the real-mode program and emulates or filters access to system hardware and software resources. The monitor must run at privilege level 0 and in protected mode. Only the 8086 program runs in VM86 mode and at privilege level 3.

  7. Simics - Wikipedia

    en.wikipedia.org/wiki/Simics

    Simics is built for high performance execution of full-system models, and uses both binary translation and hardware-assisted virtualization to increase simulation speed. It is natively multithreaded and can simulate multiple target (or guest) processors and boards using multiple host threads.