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    • 9. 发明申请
    • Dynamic update mechanisms in operating systems
    • 操作系统中的动态更新机制
    • US20070061372A1
    • 2007-03-15
    • US11227761
    • 2005-09-14
    • Jonathan AppavooAndrew BaumannDilma da SilvaOrran KriegerRobert Wisniewski
    • Jonathan AppavooAndrew BaumannDilma da SilvaOrran KriegerRobert Wisniewski
    • G06F17/30
    • G06F8/67G06F8/656
    • To dynamically update an operating system, a new factory object may have one or more new and/or updated object instances. A corresponding old factory object is then located and its version is checked for compatibility. A dynamic update procedure is then executed, which includes (a) changing a factory reference pointer within the operating system from the old factory object to the new factory object. For the case of updated object instances, (b) hot swapping each old object instance for its corresponding updated object instance, and (c) removing the old factory object. This may be performed for multiple updated object instances in the new factory object, preferably each separately. For the case of new object instances, they are created by the new factory and pointers established to invoke them. A single factory object may include multiple updated objects from a class, and/or new object instances from different classes, and the update may be performed without the need to reboot the operating system.
    • 为了动态更新操作系统,新的工厂对象可能具有一个或多个新的和/或更新的对象实例。 然后找到相应的旧工厂对象,并检查其版本的兼容性。 然后执行动态更新过程,其中包括(a)将操作系统内的工厂参考指针从旧工厂对象更改为新的工厂对象。 对于更新的对象实例的情况,(b)热交换其对应的更新对象实例的每个旧对象实例,以及(c)删除旧的工厂对象。 这可以针对新的工厂对象中的多个更新的对象实例来执行,优选地每个单独地执行。 对于新对象实例的情况,它们由新工厂创建,并且已建立的指针用于调用它们。 单个工厂对象可以包括来自类的多个更新对象和/或来自不同类的新对象实例,并且可以执行更新而不需要重新启动操作系统。
    • 10. 发明申请
    • Efficient sharing of memory between applications running under different operating systems on a shared hardware system
    • 在共享硬件系统上在不同操作系统下运行的应用程序之间高效地共享内存
    • US20050246505A1
    • 2005-11-03
    • US10834699
    • 2004-04-29
    • Paul McKenneyOrran KriegerMichal Ostrowski
    • Paul McKenneyOrran KriegerMichal Ostrowski
    • G06F9/46G06F12/00G06F12/10
    • G06F9/52G06F12/1018G06F12/1036G06F12/109G06F2212/656
    • A system, method and computer program product for efficient sharing of memory between first and second applications running under first and second operating systems on a shared hardware system. The hardware system runs a hypervisor that supports concurrent execution of the first and second operating systems, and further includes a region of shared memory managed on behalf of the first and second applications. Techniques are used to avoid preemption when the first application is accessing the shared memory region. In this way, the second application will not be unduly delayed when attempting to access the shared memory region due to delays stemming from the first application's access of the shared memory region. This is especially advantageous when the second application and operating system are adapted for real-time processing. Additional benefits can be obtained by taking steps to minimize memory access faults.
    • 一种用于在共享硬件系统上在第一和第二操作系统下运行的第一和第二应用之间高效共享存储器的系统,方法和计算机程序产品。 硬件系统运行支持并行执行第一和第二操作系统的管理程序,并且还包括代表第一和第二应用程序管理的共享存储器的区域。 当第一个应用程序正在访问共享内存区域时,技术用于避免抢占。 以这种方式,由于来自第一应用程序访问共享存储器区域的延迟,尝试访问共享存储器区域时,第二应用将不会被不适当地延迟。 当第二应用和操作系统适于实时处理时,这是特别有利的。 通过采取措施尽量减少内存访问故障可以获得额外的好处。