Detailed description of Linux directories and each directory

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Tags syslog temporary file storage ide hard drive

Detailed descriptions of Linux directories and each directory, including common directories such as/BIN,/ETC,/HOME,/USR,/ROOT,/DEV,/VAR,/PROC, which are common in Linux, are detailed and explained.

Linux Common Directory Description

/bin
Storing binary executables (ls,cat,mkdir, etc.), commonly used commands are usually here.
/etc
Storing system administration and configuration files
/home
The root directory where all user files are stored is the base point of the user's home directory, such as the user's home directory is/home/user, which can be represented by ~user
/usr
For storing system applications, the more important directory/usr/local The Local system Administrator software installation directory (installation of system-level applications). This is the most extensive directory to use for applications and files almost all in this directory.
/USR/X11R6 Store the Xwindow directory
/usr/bin a multitude of applications
/usr/sbin Some management programs for super users
/usr/doclinux Documentation
The header files required to develop and compile the application under/usr/includelinux
/usr/lib Common dynamic-link libraries and package profiles
/usr/man Help Documentation
/USR/SRC source code, the Linux kernel source is placed in the/usr/src/linux
/usr/local/bin Local Add-on command
/usr/local/lib local additions to the library
/opt
The location where additional installed optional application packages are placed. In general, we can install Tomcat and so on here.
/proc
The virtual file system directory, which is a mapping of system memory. This directory can be accessed directly to obtain system information.
/root
Home directory for Superuser (System administrator) (Privileged class ^o^)
/sbin
The binary executable file is stored and can only be accessed by root. The system-level administrative commands and programs used by the system administrator are stored here. such as Ifconfig and so on.
/dev
Used to store device files.
/mnt
The system administrator installs the temporary file system installation point, which is provided by the system to let users temporarily mount other file systems.
/boot
Store various files used for system boot
/lib
The shared libraries and kernel modules required to run the program in the file system. Shared libraries, also called dynamic Link shared libraries, act like a. dll file in Windows, which holds the shared files required for the root file system program to run.
/tmp
Used to hold various temporary files, is a common temporary file storage point.
/var
It is used to store files that need to change data at run time, and is also an overflow area for some large files, such as log files for various services (System boot log, etc.). such as
/lost+found
This directory is usually empty, the system is not properly shutdown and left "homeless" files (what is called under Windows. chk) right here.

The Linux directory and the Windows directory are very different, the Linux directory is similar to a tree, the topmost layer is its root directory, such as:

Linux directory structure

/bin binary Executable command
/dev Device Special files
/etc system administration and configuration files
/ETC/RC.D startup configuration files and scripts
The base point of the home user directory, such as the user's home directory is/home/user, can be represented by ~user
/lib Standard Programming Library, also known as dynamic Link shared library, acts like a. dll file in Windows
/sbin Super Admin commands, which are stored in the hypervisor used by the system administrator
/tmp Public temporary file storage point
/root system Administrator's home directory
The/MNT system provides this directory to allow users to temporarily mount other file systems
/lost+found This directory is usually empty, the system is not properly shut down and leave the "homeless" files (what is called under Windows. chk) right here.
/proc a virtual directory, which is a mapping of system memory. This directory can be accessed directly to obtain system information.
/var overflow area for some large files, such as log files for various services
/usr The largest directory, applications and files to be used in almost all of this directory, which contains:
/USR/X11R6 Store the Xwindow directory
/usr/bin a multitude of applications
/usr/sbin Some management programs for super users
/usr/doclinux Documentation
The header files required to develop and compile the application under/usr/includelinux
/usr/lib Common dynamic-link libraries and package profiles
/usr/man Help Documentation
/USR/SRC source code, the Linux kernel source is placed in the/usr/src/linux
/usr/local/bin Local Add-on command
/usr/local/lib locally added Coogan file system

Typically, the root filesystem occupies a smaller space because most of the files do not need to be changed frequently, and include strict files and a small, infrequently changed file system that cannot be easily damaged.
In addition to a possible system boot image called the/vmlinuz standard, the root directory generally does not contain any files. All other files are in subdirectories of the root file system.
1./bin Directory
The/bin directory contains commands that are required for boot startup or commands that may be used by ordinary users (possibly after boot boot). These commands are binary executable programs (bin is the binary--binary abbreviation), most of the system is an important system file.
2./sbin Directory
The/sbin directory is similar to/bin and is also used to store binary files. Since most of these files are the basic system programs used by the system administrator, they are generally not used by ordinary users, although they can be used when necessary and permissible.
3./ETC Directory
The/etc directory holds various system configuration files, including user information file/etc/passwd, System initialization file/ETC/RC and so on. Linux is the only way that these files can run properly.
4./root Directory
The/root directory is the Super User directory.
5./lib Directory
The/lib directory is the shared library required by the program on the root file system, which holds the shared files required for the root file system program to run. These files contain code that can be shared by many programs to prevent each program from having a copy of the same subroutine, making the executable smaller and space-saving.
6./lib/modules Directory
The/lib/modules directory contains system cores that can load various modules, especially those needed to reboot the system when recovering a damaged system (for example, network and file system drivers).
7./dev Directory
The/dev directory holds device files, which are device drivers, through which users access external devices. For example, the user can access the/dev/mouse to access the mouse input, just like accessing other files.
8./tmp Directory
The/tmp directory stores the information and data generated by the program at run time. However, after booting the boot, it is best to use/var/tmp instead of/tmp, because the former may have a larger disk space.
9./boot Directory
The/boot directory holds the files used by the boot loader (bootstraploader), such as Lilo, and the core image is often placed here, rather than in the root directory. But if there are many core images, this directory can become very large, and it would be better to use a separate file system. It is also important to note that the core image must be within the first 1024 cylinders of the IDE's hard disk.
10./mnt Directory
The/MNT directory is the installation point of the system Administrator temporary installation (mount) file system. The program does not automatically support installation to/mnt. /mnt The following can be divided into many subdirectories, such as/mnt/dosa may be using the Msdos file system floppy drive, and/mnt/exta may be the use of ext2 file system floppy drive,/mnt/cdrom optical drive and so on.
11./proc,/usr,/var,/home Directory
Installation point for other file systems.

The following is a detailed introduction to the Linux directory/etc file system

The/etc directory contains a variety of system configuration files, some of which are described below. Other you should know which program they belong to and read the man page of the program. Many network configuration files are also in/etc.
1./ETC/RC or/etc/rc.d or/ETC/RC? D
A directory that starts, or alters, a script or script that runs at run-time.
2./etc/passwd
User database, where the domain gives the user name, real name, user start directory, encrypted password, and user's
His message.
3./etc/fdprm
A floppy disk parameter table that describes the different floppy disk formats. Can be set with SETFDPRM. For more information see SETFDPRM
's help page.
4./etc/fstab
Specifies the list of file systems that need to be installed automatically at startup. Also includes information about the swap area enabled with SWAPON-A.
5./etc/group
Similar to/etc/passwd, but not the user information but the group information. Includes various data for the group.
6./etc/inittab
The configuration file for init.
7./etc/issue
Includes the user's output information before the logon prompt. Usually includes a short description of the system or a welcome message. Specific content is determined by the system administrator.
8./etc/magic
The configuration file for "file". Contains a description of the different file formats, and "file" guesses the file type based on it.
9./etc/motd
MOTD is the abbreviation for Messageoftheday, which is automatically output when the user logs in successfully. The content is determined by the system administrator. Often used to advertise information, such as warnings for scheduled shutdown times.
10./etc/mtab
List of currently installed file systems. Initialized by the script (SCRITP) and updated automatically by the Mount command. Used when a list of currently installed file systems is required (for example, the DF command).
11./etc/shadow
The shadow password file on the system on which the Shadow (shadow) password software is installed. The shadow password file moves the encrypted password in the/etc/passwd file to/etc/shadow, which is readable only by the superuser (root). This makes it more difficult to decipher the password, which increases the security of the system.
12./etc/login.defs
The configuration file for the login command.
13./etc/printcap
Similar to/etc/termcap, but for printers. syntax is different.
14./etc/profile,/etc/csh.login,/ETC/CSH.CSHRC
Files that are executed by Bourne or Cshells at logon or startup. This allows the system administrator to establish a global default environment for all users.
15./etc/securetty
Confirm the security terminal, that is, which terminal allows superuser (root) to log in. Only virtual consoles are generally listed, which makes it impossible (at least difficult) to break into the system via a modem or network and gain superuser privileges.
16./etc/shells
Lists the shells you can use. The CHSH command allows the user to change the login shell within the scope specified in this file. A service process that provides a machine FTP service FTPD checks whether the user shell is listed in the/etc/shells file, and if not, the user will not be allowed to log on.
17./etc/termcap
Terminal Performance database. Describes what "escape sequence" controls are used by different terminals. Instead of outputting the escape sequence directly (so that it works only with a particular brand of terminal), the program looks for the correct sequence of work to be done from/etc/termcap.
In this way, most programs can run on most terminals.

/dev File system

The/dev directory includes device files for all devices. The device file is named with a specific convention, which is described in the device list.
Device files are generated by the system during installation and can be described later with/dev/makedev. /dev/makedev.local is
A descriptive document written by the system administrator for the local device file (or connection) (such as some non-standard device drivers are not standard
Part of the Makedev). Below is a brief introduction to some of the commonly used files in/dev.
1./dev/console
The system console, which is the monitor directly connected to the system.
2./dev/hd
IDE hard drive driver interface. such as:/dev/hda refers to the first hard disk, had1 refers to/dev/hda's first
Partition. If there are other hard disks in the system, then/dev/hdb,/dev/hdc 、...... If there are multiple partitions, in turn, the
HDA1, Hda2 ...
3./dev/sd
SCSI disk driver interface. If the system has a SCSI hard disk, it will not access the/dev/had, but will access the/DEV/SDA.
4./dev/fd
Floppy drive device driver. such as:/dev/fd0 refers to the system's first floppy disk, which is usually said a: disk,
/DEV/FD1 refers to a second floppy disk, ... The/dev/fd1h1440, however, represents access to 4.5 high-density disks in drive 1.
5./dev/st
SCSI tape drive drivers.
6./dev/tty
Provides Virtual Console support. such as:/dev/tty1 refers to the system's first Virtual Console,/dev/tty2 is the system
A second Virtual Console.
7./dev/pty
Provide remote login pseudo terminal support. The/dev/pty device is used for Telnet login.
8./dev/ttys
Computer serial interface, for DOS is "COM1" port.
9./dev/cua
A computer serial interface, a device that is used with a modem.
10./dev/null
"Black hole," all the information written to the device disappears. For example: When you want to hide the output information on the screen, simply enter the output information into/dev/null.

/usr file system

/usr is a very important directory, usually this file system is very large, because all programs are installed here. All files in/usr typically come from Linux distributions (distribution), locally installed programs, and other things under/usr/local, as this can be done without reinstalling all the programs when upgrading a new system or release. Many of the content in the/usr directory is optional, but these features make it more efficient for users to use the system. /usr can accommodate many large packages and their configuration files. Some important directories are listed below (some of the less important directories have been omitted).
1./usr/x11r6
Contains all executable programs, configuration files, and support files for the Xwindow system. To simplify the development and installation of x, files for x are not integrated into the system. The Xwindow system is a powerful graphical environment that provides a large number of graphical tool programs. If the user is familiar with microsoftwindows or machintosh, they will not feel helpless to the Xwindow system.
2./usr/x386
Similar to/USR/X11R6, but specifically for X11RELEASE5.
3./usr/bin
Centralized almost all user commands, is the software library of the system. Some other commands are in/bin or/usr/local/bin.
4./usr/sbin
Includes unnecessary system administration commands for the root file system, such as most service programs.
5./usr/man,/usr/info,/usr/doc
These directories contain all manual pages, GNU information documents, and various other documentation files. Each online manual has two subdirectories for the section. For example:/usr/man/man1 contains the source code for the first section of the online manual (no formatted original file),/USR/MAN/CAT1 contains the first section of the formatted content. The online manual is divided into the following nine sections: internal commands, system calls, library functions, devices, file formats, games, macro packages, System management, and core programs.
6./usr/include
Contains the header files of the C language, which are used to describe the data structures, sub-procedures, and constants in the C language program, which end with. H. In order to maintain consistency, this should actually be placed under the/usr/lib, but it is customary to use the name.
7./usr/lib
Contains the immutable data files for the program or subsystem, including some site-wide configuration files. The name Lib originates from the library, and the original library of programming exists in the/usr/lib. When the program is compiled, the program connects to the library. There are also a number of programs that store configuration files.
8./usr/local
Locally installed software and other files are placed here. This is similar to/usr. Users may find some of the larger packages, such as Tex, Emacs, and more.

/var file system

/var contains data to be changed when the system is generally running. Usually the size of the directory in which the data resides is constantly changing or expanding. In the original/var directory, some of the content is in/usr, but in order to maintain the relative stability of the/USR directory, the directories that need to change frequently are placed in/var. Each system is specific, i.e. it is not shared with other computers over the network. Some important directories are listed below (some of the less important directories are omitted).
1./var/catman
includes the formatted Help (man) page. The source file for the help page is generally present in/usr/man/man, and some man pages may have a pre-formatted version, which exists in/usr/man/cat. While the other man pages need to be formatted for the first time, the formatted version exists in/var/man so that other people can look at the same page without waiting for formatting. (/var/catman are often cleared, just as you would clear a temporary directory.)
2./var/lib
Stores the files to be changed when the system is running correctly.
3./var/local
holds variable data for programs installed in/usr/local (that is, programs installed by the system administrator). Note that if necessary, even locally installed programs will use other/var directories, such as/var/lock.
4./var/lock
Locks the file. Many programs follow the convention of creating a locked file in/var/lock to support their use of a particular device or file. Other programs will not use this device or file when they notice the lock file.
5./var/log
Logs (log) files for various programs, especially login (/var/log/wtmplog records all logins and logoff to the system) and Syslog (/var/log/ Messages Records store all core and System program information). The files in the/var/log often grow in uncertainty and should be cleaned up regularly.
6./var/run
Saves the information file about the system that is valid before the next system boot. For example,/var/run/utmp contains information about the user who is currently logged on.
7./var/spool
Places a directory of "spool (spool)" programs, such as Mail, news, print queues, and other queues that work. Each of the different spool has its own subdirectory under/var/spool, for example, the user's mailbox is stored in/var/spool/mail.
8./var/tmp
allows a larger or longer temporary file than/TMP to be available. Note system administrators may not allow/var/tmp to have very old files.

/proc File System

The/proc file system is a pseudo file system, which means that it is a directory that does not actually exist, so this is a very special directory. It does not exist on a disk, but is generated in memory by the core. This directory is used to provide information about the system. The following is a description of some of the most important files and directories (more detailed in the/proc file System Procman page).
1./proc/x
For the information directory of process X, this x is the identification number of this process. Each process under/proc has a name of self-
The directory of the process number.
2./proc/cpuinfo
Store processor (CPU) information, such as the type of CPU, manufacturer, model, and performance.
3./proc/devices
A list of device drivers for the currently running core configuration.
4./proc/dma
Displays the DMA channel currently in use.
5./proc/filesystems
The file system information for the core configuration.
6./proc/interrupts
Displays the information about the interrupt information and occupants that were occupied, and the amount that was consumed.
7./proc/ioports
The I/O port currently in use.
8./proc/kcore
System physical memory image. It is exactly the same size as the physical memory, but it does not actually occupy so much memory; it is only created when the program accesses it. (Note: Unless you copy it somewhere, there's nothing in the/proc that takes up any disk space.) )
9./proc/kmsg
The message for the core output. will also be sent to the syslog.
10./proc/ksyms
The core symbol table.
11./proc/loadavg
System "average load"; 3 meaningless indicators indicate the current workload of the system.
12./proc/meminfo
Various memory usage information, including physical memory and swap partition (swap).
13./proc/modules
Stores which core module information is currently loaded.
14./proc/net
Network protocol status information.
15./proc/self
A symbolic connection to the process directory that holds the program to view/proc. When 2 processes view/proc, this will be a different connection. This is primarily convenient for the program to get its own process directory.
16./proc/stat
The different states of the system, for example, the number of times a page error occurred after the system started.
17./proc/uptime
The length of time the system started.
18./proc/version
Core version

Detailed description of Linux directories and each directory

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