as linux,Linux的软件
各位老铁们,大家好,今天由我来为大家分享as linux,以及Linux的软件的相关问题知识,希望对大家有所帮助。如果可以帮助到大家,还望关注收藏下本站,您的支持是我们最大的动力,谢谢大家了哈,下面我们开始吧!
LinuxAs4.0操作系统-恩悠
LinuxAs4.0是redhat针对企业推出的linuxsever端系统,这个是要收费的。AS是超级服务器版(AdvancedServer),他在标准Linux内核的基础上,做了性能上的增强,并提高了可靠性,集成了众多常见服务器的驱动程序。还有redhatlinuxes系列,ES是企业服务器(EnterpriseServer),AS的精简版本。他与常见的AS系列的区别是,AS支持到4路以上CPU,而ES只能支持两路CPU。AS和ES在大多数程序包上并无区别,只在内核等少数软件包上有差异。AS和ES的售价差别比较大,通常ES用在随服务器一同购买的OEM版本中例如购买DELL服务器,搭配的Linux会是ES系列。如果要搭配AS系列,则需要多花数千元。如你要当服务器用,还有一个免费的linux系统,centos,企业中用的也比较多。而象一般的linux如fedora,ubuntu等虽然也能实现服务器功能,但用在个人桌面系统比较多,
as命令在Linux开发中的作用是什么
GNU汇编器中的as命令是一个二进制工具,是GNU Binutils工具集中的重要组成部分。它的主要职责是将汇编代码转化为机器可执行的二进制代码,支持多种处理器架构。as命令的使用方法以简单明了的语法格式呈现:as [参数] [文件]。
在实际操作中,as命令的一些常用参数可以帮助我们定制编译过程。例如,-ac参数用于忽略编译过程中可能遇到的错误,-g选项则用于生成调试信息,这对于程序的调试和优化非常有用。此外,-o选项允许指定生成的目标文件名,如:as linuxcool.s-o linuxcool.o。
在Linux开发环境中,as命令并不常用作单独的编译步骤,通常它会被gcc命令集成,自动完成汇编和链接。例如,如果我们有一个名为linuxcool.s的汇编文件,可以通过gcc命令直接编译:gcc linuxcool.s-o linuxcool可执行文件。这样可以简化开发流程,提高效率。
总的来说,as命令作为汇编器工具,虽然在Linux开发中不是直接操作的对象,但理解其作用和参数使用,对于深入理解底层编程和优化至关重要。
嵌入式linux和嵌入式android系统有什么区别和联系
嵌入式android源码架构:uboot+linux kernel+android(包含文件系统,虚拟机,UI)
嵌入式linux:这是大部分人认识的linux uboot+linux kernel+文件系统+QT(UI),
当然两者的linux内核因为上层UI的不同会稍有差别,不过还是非常接近的,做过linux的人可以无缝切换到android底层开发,所以大家说的学习android系统,其实最重要的就是学习linux驱动,再加一下android下的专门的HAL,JNI,java等等,不过大公司android相关部分也是专门的人做的了。
甚至连QT都不用了,因为linux很多设备都是没有UI的,所以要来干啥?直接无界面,照样是嵌入式linux。
现在大家说的什么嵌入式debian,ubuntu,其实也是站在linux巨人的肩膀上,其实都不算是linux的分支,只算是linux的延伸,小变化而已。看到这里大家知道嵌入式linux的强大了吧,反正是比wince强大N倍啊。
O(∩_∩)O~,所以啊,学习嵌入式android,其实底下就是学习uboot,linux内核啊,不会搞这些就像搞应用一样,所以大家以为android就是java,是非常片面的。
以前老的,说了一下区别,可以参考一下
ARCH--这是Android修改了arch/arm下面的一些文件:
arch/arm:
Chg: arch/arm/kernel/entry-armv.S
Chg: arch/arm/kernel/module.c
Chg: arch/arm/kernel/process.c
Chg: arch/arm/kernel/ptrace.c
Chg: arch/arm/kernel/setup.c
Chg: arch/arm/kernel/signal.c
Chg: arch/arm/kernel/traps.c
Chg: arch/arm/mm/cache-v6.S
Chg: arch/arm/vfp/entry.S
Chg: arch/arm/vfp/vfp.h
Chg: arch/arm/vfp/vfphw.S
Chg: arch/arm/vfp/vfpmodule.c
Goldfish--这是Android为了模拟器所开发的一个虚拟硬件平台。Goldfish执行arm926T指令(在2.6.29中,goldfish也支持ATMv7指令),但是在实际的设备中,该虚拟平台的文件不会被编译。
arch/arm/mach-goldfish:
New: arch/arm/mach-goldfish/audio.c
New: arch/arm/mach-goldfish/board-goldfish.c
New: arch/arm/mach-goldfish/pdev_bus.c
New: arch/arm/mach-goldfish/pm.c
New: arch/arm/mach-goldfish/switch.c
New: arch/arm/mach-goldfish/timer.c
YAFFS2--和PC把文件存储在硬盘上不一样,移动设备一般把Flash作为存储设备。尤其是NAND flash应用非常广泛(绝大多数手机用的都是NAND flash,三星的一些手机使用的是OneNAND)。NAND flash具有低成本和高密度的优点。
YAFFS2是“Yet Another Flash File System, 2nd edition"的简称。它提供在Linux内核和NAND flash设备之前高效率的接口。 YAFFS2并没有包含在标准的Linux内核中, Google把它添加到了Android的kernel
fs/yaffs2:
New: fs/yaffs2/devextras.h
New: fs/yaffs2/Kconfig
New: fs/yaffs2/Makefile
New: fs/yaffs2/moduleconfig.h
New: fs/yaffs2/yaffs_checkptrw.c
New: fs/yaffs2/yaffs_checkptrw.h
New: fs/yaffs2/yaffs_ecc.c
New: fs/yaffs2/yaffs_ecc.h
New: fs/yaffs2/yaffs_fs.c
New: fs/yaffs2/yaffs_getblockinfo.h
New: fs/yaffs2/yaffs_guts.c
New: fs/yaffs2/yaffs_guts.h
New: fs/yaffs2/yaffsinterface.h
New: fs/yaffs2/yaffs_mtdif1.c
New: fs/yaffs2/yaffs_mtdif1.h
New: fs/yaffs2/yaffs_mtdif2.c
New: fs/yaffs2/yaffs_mtdif2.h
New: fs/yaffs2/yaffs_mtdif.c
New: fs/yaffs2/yaffs_mtdif.h
New: fs/yaffs2/yaffs_nand.c
New: fs/yaffs2/yaffs_nandemul2k.h
New: fs/yaffs2/yaffs_nand.h
New: fs/yaffs2/yaffs_packedtags1.c
New: fs/yaffs2/yaffs_packedtags1.h
New: fs/yaffs2/yaffs_packedtags2.c
New: fs/yaffs2/yaffs_packedtags2.h
New: fs/yaffs2/yaffs_qsort.c
New: fs/yaffs2/yaffs_qsort.h
New: fs/yaffs2/yaffs_tagscompat.c
New: fs/yaffs2/yaffs_tagscompat.h
New: fs/yaffs2/yaffs_tagsvalidity.c
New: fs/yaffs2/yaffs_tagsvalidity.h
New: fs/yaffs2/yportenv.h
Bluetooth-- Google为Bluetooth打上了patch,fix了一些Bluetooth的bug
drivers/bluetooth:
Chg: drivers/bluetooth/bfusb.c
Chg: drivers/bluetooth/bt3c_cs.c
Chg: drivers/bluetooth/btusb.c
Chg: drivers/bluetooth/hci_h4.c
Chg: drivers/bluetooth/hci_ll.c
Scheduler--对于Scheduler的改变非常小,我对它并没有去研究。
Chg: kernel/sched.c
New Android Functionality--除了fix一些bug以及其他一些小的更改,Android增加了一些新的功能,介绍如下:
IPC Binder-- The IPC Binder is an Inter-Process Communication(IPC) mechanism. It allows processes to provide services to other processes via a set of higher-level APIs than are available in standard Linux. An Internet search indicated that the Binder concept originated at Be, Inc., and then made its way into Palm's software, before Google wrote a new Binder for Android.
New: drivers/staging/android/binder.c
Low Memory Killer-- Android adds a low-memory killer that, each time it's called, scans the list of running Linux processes, and kills one. It was not clear in our cursory examination why Android adds a low-memory killer on top of the already existing one in the standard Linux kernel.
New: drivers/staging/android/lowmemorykiller.c
Ashmem-- Ashmem is an Anonymous SHared MEMory system that adds interfaces so processes can share named blocks of memory. As an example, the system could use Ashmem to store icons, which multiple processes could then access when drawing their UI. The advantage of Ashmem over traditional Linux shared memory is that it provides a means for the kernel to reclaim these shared memory blocks if they are not currently in use. If a process then tries to access a shared memory block the kernel has freed, it will receive an error, and will then need to reallocate the block and reload the data.
New: mm/ashmem.c
RAM Console and Log Device-- To aid in debugging, Android adds the ability to store kernel log messages to a RAM buffer. Additionally, Android adds a separate logging module so that user processes can read and write user log messages.
New: drivers/staging/android/ram_console.c
Android Debug Bridge-- Debugging embedded devices can best be described as challenging. To make debugging easier, Google created the Android Debug Bridge(ADB), which is a protocol that runs over a USB link between a hardware device running Android and a developer writing applications on a desktop PC.
drivers/usb/gadget:
New: drivers/usb/gadget/android.c
Chg: drivers/usb/gadget/composite.c
Chg: drivers/usb/gadget/f_acm.c
New: drivers/usb/gadget/f_acm.h
New: drivers/usb/gadget/f_adb.c
New: drivers/usb/gadget/f_adb.h
New: drivers/usb/gadget/f_mass_storage.c
New: drivers/usb/gadget/f_mass_storage.h
Android also adds a new real-time clock, switch support, and timed GPIO support. We list the impacted files for these new modules at the end of this document.
Power Management-- Power management is one of the most difficult pieces to get right in mobile devices, so we split it out into a group separate from the other pieces. It's interesting to note that Google added a new power management system to Linux, rather than reuse what already existed. We list the impacted files at the end of this document.
kernel/power:
New: kernel/power/consoleearlysuspend.c
New: kernel/power/earlysuspend.c
New: kernel/power/fbearlysuspend.c
Chg: kernel/power/main.c
Chg: kernel/power/power.h
Chg: kernel/power/process.c
New: kernel/power/userwakelock.c
New: kernel/power/wakelock.c
Miscellaneous Changes-- In addition to the above, we found a number of changes that could best be described as,'Miscellaneous.' Among other things, these changes include additional debugging support, keypad light controls, and management of TCP networking
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