• In this example the mad16 kernel device driver depends on the ad1848 device driver.

    这个例子里面,mad16内核设备驱动程序依赖ad1848驱动。

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  • What you'll find is a variation in design and usage of the available kernel APIs, but each is useful for instruction or as a starting point for a new device driver.

    这里可以找到各种设计的变化以及可用内核api使用但是所学到的一点都会非常有用,都可以作为新设备驱动程序的起点。

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  • DSF is especially helpful in executing device driver kernel code where the device may not be present.

    设备可能存在时,DSF特别有助于执行设备驱动程序内核代码

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  • It could be in the kernel core per se, or in a device driver that is linked into the kernel either statically or dynamically.

    本身可以内核中,也可以在静态动态链接内核设备驱动例程中。

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  • For audio, the default Linux kernel sound driver supports a wide variety of devices, but it pays to research your device, particularly if it is built-in on the motherboard.

    对于音频而言默认Linux内核声音驱动程序支持广泛设备研究设备回报的,特别是内置主板中时。

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  • These kernel threads should be destroyed in the close of the device driver.

    这些内核线程应该设备驱动程序close函数中进行销毁

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  • This kernel thread should be destroyed in the close of the device driver in this pseudo code.

    在下面的伪代码中,这个内核线程应该设备驱动程序close函数中进行销毁

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  • Within a driver, the mmap function is implemented through the remap_pfn_range kernel function, which provides a linear mapping of device memory into a user's address space.

    一个驱动程序中,mmap函数通过remap _ pfn_range内核函数实现提供设备内存用户地址空间线性映射

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  • In response, devfs_register adds the foo0 device node to the root of the devfs namespace, and records that this new foo0 node should map to the foo device driver in the kernel.

    相应,devfs_registerdevfs名称空间目录添加foo0设备节点记录这个新的foo0节点应该映射内核中的foo设备驱动程序

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  • The kernel trace hooks call functions in the device driver code, which log the information provided by the kernel trace hooks in pinned buffers.

    内核追踪挂钩调用设备驱动程序代码中的函数那些函数将内核追踪挂钩固定缓冲区pinned buffer)中给出信息记录下来。

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  • The device entry in Listing 1 states that the orinoco_cs driver consists of three kernel modules: Orinoco, orinoco_cs, and hermes.

    清单1中的设备条目规定orinoco_cs驱动程序三个内核模块组成orinoco、orinoco_cshermes

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  • TAP is a virtual network kernel driver that implements an Ethernet device and as such, operates at the Ethernet frame level.

    TAP一个虚拟网络内核驱动驱动实现Ethernet设备Ethernet框架级别操作

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  • To visit the device, the Linux kernel maps the device operation call to the device driver via the file system.

    为了访问设备Linux内核将设备操作调用通过文件系统映射设备驱动程序

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  • The above rule says: match a device which was named by the kernel as hdb AND where the driver is ide-disk. Name the device node with the default name and create a symbolic link to it named sparedisk.

    上面规则意思匹配内核命名hdb以及驱动为ide-disk的设备命名设备节点缺省名字,同时创建一个指向名为sparedisk的符号链接

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  • Therefore, the Linux USB layer, the BlueZ USB transport driver, and the BlueZ protocol stack are the main kernel layers that get the device working.

    因此LinuxUS bBlueZ US b传输器驱动程序以及BlueZ协议使设备工作主要内核

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  • The goal of the Linux test Project is to help device driver developers standardize device unit tests and increase device driver stability in the Linux kernel.

    LinuxTestProject目标帮助设备驱动程序开发人员标准化设备单元测试提高Linux内核设备驱动程序稳定性

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  • In practice, buffering may occur at various other levels, such as on the hard disk itself, the controller, or the kernel disk drive device driver, so ours may not make much of a difference.

    实际上缓冲可能发生其它不同级别例如硬盘本身控制器内核磁盘驱动设备驱动程序,所以我们的工作可能性能影响不大

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  • That way, when a process performs an operation on the device, the kernel knows what device driver should be referenced.

    这样进程设备执行操作内核就会知道应该引用什么设备驱动程序

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  • All this kernel needs to have loaded into it is the device driver for the disk on which the other, loadable, modules are being kept.

    这种内核需要加载的东西就是磁盘设备驱动程序,其他加载模块都可以保存在磁盘上。

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  • This section highlights some of the important aspects of device driver porting from the 2.4 to 2.6 kernel.

    重点介绍驱动程序2.4内核移植2.6内核一些重要方面

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  • When they are accessed, the kernel maps to the appropriate device driver by devfs device name, rather than by major number.

    它们访问时内核通过devfs设备名称映射合适的设备驱动程序不是通过设备号。

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  • The mapping from special file to kernel driver is made possible by the major number, not the actual device name, which is irrelevant to a non-devfs system.

    特殊文件内核驱动程序映射成为可能的是主设备而不是真实设备名称和非 devfs 系统无关)。

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  • The Training Program first classes will be Essential Linux Device Driver Development Skills; Creating Applications for Linux; and Kernel Debugging and Performance.

    这一培训计划首批课程精华Linux设备驱动程序开发技能创建Linux应用程序、以及内核调试性能。

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  • The kernel module implements a driver for a virtual block device (which is replicated between a local disk and a remote disk across the network).

    内核模块实现一个用于虚拟设备(网络本地磁盘远程磁盘之间复制)的驱动程序

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  • The first two courses, drawn from the selection of available on-site offerings, will be Essential Linux Device Driver Development Skills and Linux Kernel Debugging and Performance.

    在网站提供两个课程linux设备驱动程序开发技术基础linux内核调试性能

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  • The driver stores, in private data structures, all the information needed to drive the device and interact with other kernel components that require the device.

    在驱动私有数据结构中,驱动程序保存所有用于驱动设备必要信息以及内核交互时必须组件信息。

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  • The registration and initialization tasks are taken care of partially by the core kernel and partially by the device driver.

    设备注册初始化就做这样事,内核相关,部份与设备驱动相关。

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  • Update Package is unable to build a device driver for the running kernel because the required kernel source files are not installed.

    更新软件包无法当前运行内核构建设备驱动程序因为没有安装所需的内核文件

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  • According to the isolation positions of device drivers, the device driver framework can be classified into three types: kernel mode driver, user mode driver and virtual machine based driver.

    目前,设备驱动可靠性研究着重于设备驱动与操作系统内核的有效分离,设备驱动框架按照驱动被隔离所处位置大致分为内核态、用户虚拟

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  • According to the isolation positions of device drivers, the device driver framework can be classified into three types: kernel mode driver, user mode driver and virtual machine based driver.

    目前,设备驱动可靠性研究着重于设备驱动与操作系统内核的有效分离,设备驱动框架按照驱动被隔离所处位置大致分为内核态、用户虚拟

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