• Other devices are not memory mapped on the processor bus.

    其他设备没有映射处理机总线上

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  • Segments 3-C and E: Memory mapped regions (including files) and shared memory

    分段 3-CE内存映射区域包括文件)和共享内存

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  • This will create the memory mapped file but to start using it we will need a map view.

    这样我们就创建一个内存映射文件

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  • With the stream in place, we can now create the memory mapped file. Let's see an example.

    创建合适流之后现在可以创建内存映射文件了。

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  • Now, there is a small drawback with this approach and is related to the size of the memory mapped file.

    但是这种方法小小的缺点,这内存映射文件大小有关。如果事先不知道大小的话,为了以防万一,你可能会构造一个超级大的文件。

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  • Here I am using two different instances of same application to read write data from memory mapped file.

    在这里两个相同应用程序不同实例读写数据内存映射文件

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  • The physical memory that is mapped for the guest operating system is actually virtual memory mapped into the process.

    映射客户操作系统物理内存实际上映射给这个进程虚拟内存。

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  • If we explore the construction of the memory mapped file we can see that there is no stream, we just name the resource.

    如果我们想要探究内存映射文件结构的话,需要构造一个只要找到资源名字即可

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  • These include convenience methods for reading and writing text-based files, significantly faster directory enumeration, and support for memory mapped files.

    包括读写文本文件便捷方法快速地列举目录内存映射文件的支持

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  • Finally, another interesting area is the creation of multiple map views, these can work on the same memory mapped file accessing different areas of the files.

    最后,让我们来看一下另外一个有意思领域创建多个映射视图。它们同时工作访问同一个内存映射文件不同区域

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  • The access to the file USES the same syntax as the previous example, remember that if you close the memory mapped file this will be non accessible, this issue catches many developer.

    如何访问文件跟前述示例一样千万记住如果关闭内存映射文件,那么不能访问了。

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  • Now if we want to read from it, the other process needs also to create a memory mapped file, we can use the other static initialize that opens an existing one or creates one if it does not exist.

    其它进程如何读取内存映射文件的内容。 一样,我们创建一个内存映射文件。

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  • The dynamic libraries are mapped into the application execution memory by the dynamic linking loader.

    通过动态链接装入器动态映射应用程序可执行内存中。

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  • Remember the system break, the location that is the edge of mapped memory for the process?

    还记得系统中断点吗?位置进程映射内存边界

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  • As mentioned above, the edge of mapped memorylast valid addressis often known as the system break or the current break.

    前所述,被映射内存边界(最后一个有效地址)称为系统中断点或者当前中断点。

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  • This value also includes the pages to or from non-cached mapped memory files.

    包括往返非缓存、映射后内存文件页面

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  • When an application references a page that is not mapped into real memory, the system generates a page fault.

    如果应用程序引用了某个分页,而分页并没有映射实际内存中,那么系统将产生一个缺页。

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  • So, in the above example, there are 16529 non-computational file pages mapped into memory.

    因此上面示例中,一共有16529个非计算性文件分页被映射到了内存中

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  • As the name implies, a memory-mapped file maps a file-like construct to an address in memory.

    顾名思义内存映射文件将一个类似文件的结构映射内存地址

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  • With the next version of the BCL,.net developers will be able to use memory-mapped files directly instead of via platform invoke calls.

    BCL下一个版本. NET开发人员能够直接使用内存映射文件而无需通过平台调用的方式。

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  • The ppe does this through memory-mapped register access from kernel mode, while the SPE writes to its DMA channels from code running on the SPU.

    PPE可以通过内核模式中使用内存映射寄存器来发起dma传输,SPE则可以使用SPU上运行代码写入dma通道

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  • Then, when it is time to start the JVM, instead of loading the system classes from scratch, the memory-mapped files are loaded.

    这样,在启动J VM,就不会从头开始装入系统而是装入内存映射文件。

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  • Inuse-number of 4k pages mapped into memory.

    inuse——映射内存中的4K分页的数目。

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  • So, in the above example, there are 188426 working storage pages mapped into memory.

    因此上面示例中,一共有188426个工作存储分页映射内存中

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  • pinnumber of 4K pages mapped into memory and pinned (pin is a subset of inuse)

    pin ——映射内存中的、固定4K分页数目(pininuse子集

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  • I'll discuss an eighth type, MappedByteBuffer, available for memory-mapped files, later in this article.

    本文后面,讨论第8种类型MappedByteBuffer,它用于内存映射文件

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  • High performance (SendFile API support and memory-mapped files).

    高性能(支持SendFileAPI内存映射文件)。

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  • In the DB2 implementation of memory Windows, each instance is mapped to an individual memory window.

    内存DB 2实现中,每个实例映射一个单独的内存窗。

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  • In addition to actual files, devices and Shared memory objects can be mapped.

    除了实际文件设备共享内存对象能够映射。

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  • In addition to actual files, devices and Shared memory objects can be mapped.

    除了实际文件设备共享内存对象能够映射。

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