• How do I view the characteristics of workload partitions?

    如何查看工作负载分区的特征?

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  • Workload partitions (WPARs) -software-based virtualization.

    工作负载分区(WPAR)—基于软件的虚拟化。

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  • AIX 7 will allow for you to run AIX 5.2 workload partitions.

    AIX7允许运行AIX 5.2工作负载分区。

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  • To view the characteristics of all workload partitions, type.

    要想查看所有工作负载分区的特征,输入。

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  • In this article, you learned about enhancements to workload partitions in AIX 6.1.

    在本文中,您了解了AIX 6.1中对工作负载分区的改进。

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  • To view WPARs, we need to click on view workload partitions in WPAR Manager window.

    要查看WPAR,我们需要在WPARManager窗口点击视图工作负载分区。

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  • IBM now offers AIX workload partitions (WPARs), which is their answer to containers.

    IBM现在提供AIX工作负载分区(WPAR),这向容器发起了挑战。

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  • AIX 6.1 supports two types of workload partitions, Application WPAR and System WPAR.

    AIX 6.1支持两种类型的工作负载分区:应用程序WPAR和系统WPAR。

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  • In this article, you learned the following basics of workload partitions in AIX 6.1.

    在本文中,您了解了AIX 6.1中工作负载分区的一些基础知识。

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  • Several new capabilities have been added to AIX workload partitions in recent releases.

    在最近的版本中,AIX工作负载分区增加了几个新功能。

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  • AIX 6.1 introduces a new mechanism for virtualization: Workload Partitions (WPARs).

    AIX 6.1引入了一种新的虚拟化机制:工作负载分区(WPAR)。

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  • To display a summary of the statistics for all of the workload partitions after boot, type.

    要想显示所有工作负载分区自引导以来的统计数据汇总,输入。

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  • There are two kinds of WPARs: application workload partitions and system workload partitions.

    有两种类型的WPAR:应用程序工作负载分区和系统工作负载分区。

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  • There are two types of WPARs: system workload partitions and application workload partitions.

    共有两种类型的WPAR:系统工作负载分区和应用程序工作负载分区。

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  • AIX 6.1 introduced a new software virtualization feature called Workload Partitions (WPARs).

    AIX 6.1引入一个新软件虚拟化特性,称为工作负载分区(Workload Partitions,WPAR)。

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  • To display all of the virtual memory statistics available for all of the workload partitions, type.

    要想显示所有工作负载分区可用的所有虚拟内存统计数据,输入。

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  • Application workload partitions: Do not provide the highly virtualized system environment offered by system WPARs.

    应用程序工作负载分区:它们并不提供系统WPAR那样的高度虚拟化的系统环境。

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  • The first choice, List All Workload Partitions, executes the lswpar command to show all defined WPARs on your system.

    第一个选项ListAllWorkload Partitions,将执行lswpar命令,以显示您的系统中所有已定义的WPAR。

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  • This section further defines the different types of workload partitions and discusses scenarios where WPARs should be used.

    此部分将进一步定义不同类型的工作负载分区,并讨论应该使用WPAR的各个场景。

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  • After clicking view workload partitions, we will see all workload partitions which are there on WPAR agents thick04 and thick03.

    点击视图工作负载分区后,我们将看到WPAR代理thick04和thick 03中的所有工作负载分区。

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  • In AIX 7, it is also worth considering the effect of virtual memory and how it is used and applied within workload partitions (WPAR).

    在AIX7中,还有必要考虑虚拟内存的影响以及在工作负载分区(WPAR)中如何使用和应用它。

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  • This is another important new feature of AIX V6.1, which allows clients to relocate entire workload partitions without shutting down the application or WPAR.

    这是AIXV6.1中另一个重要的新特性,它允许客户机在不停止应用程序或WPAR的情况下重新定位整个工作负载分区。

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  • As discussed earlier, Workload Partitions (WPARs) are virtualized operating system environments that are created within a single AIX (only supported on AIX 6.1) image.

    正如前面讨论的,工作负载分区(WPAR)是在单个aix映像中创建的虚拟化操作系统环境(仅在AIX 6.1上受支持)。

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  • Workload partitions: operating systems virtualization, similar to Solaris containers, called WPARs allow for the creation of multiple AIX 6.1 environments inside of one AIX 6.1 instance.

    工作负载分区:WPAR是与Solaris容器相似的操作系统虚拟化特性,它允许在一个AIX 6.1实例中创建多个AIX 6.1环境。

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  • Notice how the processors have been divided up between the four partitions based on workload.

    注意,处理器是如何基于工作负载在四个分区之间进行分配的。

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  • A workload can then be spread across multiple partitions for large tables, while allowing smaller tables to be stored on one or more database partitions.

    于是,对于大型的表,工作负载可以分布在多个分区上,而更小的表也可以存储在一个或多个数据库分区上。

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  • Another example is the movement of CPU resources between partitions based on workload requirements for the partitions.

    另外一个例子是根据任务负载对分区的需求,在分区之间移动CPU资源。

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  • Unfortunately, PLM has no knowledge of the importance of any workload running in the partitions and, therefore, cannot readjust priority based on the changes of workload types.

    遗憾的是,PLM 未考虑到分区中运行的任何工作负荷的重要性,因此无法基于工作负荷类型的更改重新调整优先级。

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  • To improve scalability, the workload was divided into several logical partitions, with one partition for each processor.

    为了提高可伸缩性,可以将工作负载分为多个逻辑分区,每个分区对应一个处理器。

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  • This avoids excessive workload on the catalog server in allocating (and then moving) partitions and replicas as ObjectGrid servers become available during start up.

    这可以避免在启动期间ObjectGrid服务器可用时,分配(然后移动)分区和副本使目录服务器造成过重的工作负荷。

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