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This text is a brief description of the features that are present in the Bash shell (version 4.3, 2 February 2014). The Bash home page is http://www.gnu.org/software/bash/.
This is Edition 4.3, last updated 2 February 2014,
of The GNU Bash Reference Manual,
for Bash, Version 4.3.
Bash contains features that appear in other popular shells, and some features that only appear in Bash. Some of the shells that Bash has borrowed concepts from are the Bourne Shell (‘sh’), the Korn Shell (‘ksh’), and the C-shell (‘csh’ and its successor, ‘tcsh’). The following menu breaks the features up into categories, noting which features were inspired by other shells and which are specific to Bash.
This manual is meant as a brief introduction to features found in Bash. The Bash manual page should be used as the definitive reference on shell behavior.
| 1. Introduction | An introduction to the shell. | |
| 2. Definitions | Some definitions used in the rest of this manual. | |
| 3. Basic Shell Features | The shell "building blocks". | |
| 4. Shell Builtin Commands | Commands that are a part of the shell. | |
| 5. Shell Variables | Variables used or set by Bash. | |
| 6. Bash Features | Features found only in Bash. | |
| 7. Job Control | What job control is and how Bash allows you to use it. | |
| 8. Command Line Editing | Chapter describing the command line editing features. | |
| 9. Using History Interactively | Command History Expansion | |
| 10. Installing Bash | How to build and install Bash on your system. | |
| A. Reporting Bugs | How to report bugs in Bash. | |
| B. Major Differences From The Bourne Shell | A terse list of the differences between Bash and historical versions of /bin/sh. | |
| C. GNU Free Documentation License | Copying and sharing this documentation. | |
| D. Indexes | Various indexes for this manual. |
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| 1.1 What is Bash? | A short description of Bash. | |
| 1.2 What is a shell? | A brief introduction to shells. |
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Bash is the shell, or command language interpreter,
for the GNU operating system.
The name is an acronym for the ‘Bourne-Again SHell’,
a pun on Stephen Bourne, the author of the direct ancestor of
the current Unix shell sh,
which appeared in the Seventh Edition Bell Labs Research version
of Unix.
Bash is largely compatible with sh and incorporates useful
features from the Korn shell ksh and the C shell csh.
It is intended to be a conformant implementation of the IEEE
POSIX Shell and Tools portion of the IEEE POSIX
specification (IEEE Standard 1003.1).
It offers functional improvements over sh for both interactive and
programming use.
While the GNU operating system provides other shells, including
a version of csh, Bash is the default shell.
Like other GNU software, Bash is quite portable. It currently runs
on nearly every version of Unix and a few other operating systems -
independently-supported ports exist for MS-DOS, OS/2,
and Windows platforms.
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At its base, a shell is simply a macro processor that executes commands. The term macro processor means functionality where text and symbols are expanded to create larger expressions.
A Unix shell is both a command interpreter and a programming language. As a command interpreter, the shell provides the user interface to the rich set of GNU utilities. The programming language features allow these utilities to be combined. Files containing commands can be created, and become commands themselves. These new commands have the same status as system commands in directories such as ‘/bin’, allowing users or groups to establish custom environments to automate their common tasks.
Shells may be used interactively or non-interactively. In interactive mode, they accept input typed from the keyboard. When executing non-interactively, shells execute commands read from a file.
A shell allows execution of GNU commands, both synchronously and asynchronously. The shell waits for synchronous commands to complete before accepting more input; asynchronous commands continue to execute in parallel with the shell while it reads and executes additional commands. The redirection constructs permit fine-grained control of the input and output of those commands. Moreover, the shell allows control over the contents of commands’ environments.
Shells also provide a small set of built-in
commands (builtins) implementing functionality impossible
or inconvenient to obtain via separate utilities.
For example, cd, break, continue, and
exec cannot be implemented outside of the shell because
they directly manipulate the shell itself.
The history, getopts, kill, or pwd
builtins, among others, could be implemented in separate utilities,
but they are more convenient to use as builtin commands.
All of the shell builtins are described in
subsequent sections.
While executing commands is essential, most of the power (and complexity) of shells is due to their embedded programming languages. Like any high-level language, the shell provides variables, flow control constructs, quoting, and functions.
Shells offer features geared specifically for interactive use rather than to augment the programming language. These interactive features include job control, command line editing, command history and aliases. Each of these features is described in this manual.
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These definitions are used throughout the remainder of this manual.
POSIXA family of open system standards based on Unix. Bash is primarily concerned with the Shell and Utilities portion of the POSIX 1003.1 standard.
blankA space or tab character.
builtinA command that is implemented internally by the shell itself, rather than by an executable program somewhere in the file system.
control operatorA token that performs a control function. It is a newline
or one of the following:
‘||’, ‘&&’, ‘&’, ‘;’, ‘;;’,
‘|’, ‘|&’, ‘(’, or ‘)’.
exit statusThe value returned by a command to its caller. The value is restricted to eight bits, so the maximum value is 255.
fieldA unit of text that is the result of one of the shell expansions. After expansion, when executing a command, the resulting fields are used as the command name and arguments.
filenameA string of characters used to identify a file.
jobA set of processes comprising a pipeline, and any processes descended from it, that are all in the same process group.
job controlA mechanism by which users can selectively stop (suspend) and restart (resume) execution of processes.
metacharacterA character that, when unquoted, separates words. A metacharacter is
a blank or one of the following characters:
‘|’, ‘&’, ‘;’, ‘(’, ‘)’, ‘<’, or
‘>’.
nameA word consisting solely of letters, numbers, and underscores,
and beginning with a letter or underscore. Names are used as
shell variable and function names.
Also referred to as an identifier.
operatorA control operator or a redirection operator.
See section Redirections, for a list of redirection operators.
Operators contain at least one unquoted metacharacter.
process groupA collection of related processes each having the same process group ID.
process group IDA unique identifier that represents a process group
during its lifetime.
reserved wordA word that has a special meaning to the shell. Most reserved
words introduce shell flow control constructs, such as for and
while.
return statusA synonym for exit status.
signalA mechanism by which a process may be notified by the kernel of an event occurring in the system.
special builtinA shell builtin command that has been classified as special by the POSIX standard.
tokenA sequence of characters considered a single unit by the shell.
It is either a word or an operator.
wordA sequence of characters treated as a unit by the shell.
Words may not include unquoted metacharacters.
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Bash is an acronym for ‘Bourne-Again SHell’. The Bourne shell is the traditional Unix shell originally written by Stephen Bourne. All of the Bourne shell builtin commands are available in Bash, The rules for evaluation and quoting are taken from the POSIX specification for the ‘standard’ Unix shell.
This chapter briefly summarizes the shell’s ‘building blocks’: commands, control structures, shell functions, shell parameters, shell expansions, redirections, which are a way to direct input and output from and to named files, and how the shell executes commands.
| 3.1 Shell Syntax | What your input means to the shell. | |
| 3.2 Shell Commands | The types of commands you can use. | |
| 3.3 Shell Functions | Grouping commands by name. | |
| 3.4 Shell Parameters | How the shell stores values. | |
| 3.5 Shell Expansions | How Bash expands parameters and the various expansions available. | |
| 3.6 Redirections | A way to control where input and output go. | |
| 3.7 Executing Commands | What happens when you run a command. | |
| 3.8 Shell Scripts | Executing files of shell commands. |
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| 3.1.1 Shell Operation | The basic operation of the shell. | |
| 3.1.2 Quoting | How to remove the special meaning from characters. | |
| 3.1.3 Comments | How to specify comments. |
When the shell reads input, it proceeds through a sequence of operations. If the input indicates the beginning of a comment, the shell ignores the comment symbol (‘#’), and the rest of that line.
Otherwise, roughly speaking, the shell reads its input and divides the input into words and operators, employing the quoting rules to select which meanings to assign various words and characters.
The shell then parses these tokens into commands and other constructs, removes the special meaning of certain words or characters, expands others, redirects input and output as needed, executes the specified command, waits for the command’s exit status, and makes that exit status available for further inspection or processing.
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The following is a brief description of the shell’s operation when it reads and executes a command. Basically, the shell does the following:
metacharacters. Alias expansion is performed by this step
(see section Aliases).
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| 3.1.2.1 Escape Character | How to remove the special meaning from a single character. | |
| 3.1.2.2 Single Quotes | How to inhibit all interpretation of a sequence of characters. | |
| 3.1.2.3 Double Quotes | How to suppress most of the interpretation of a sequence of characters. | |
| 3.1.2.4 ANSI-C Quoting | How to expand ANSI-C sequences in quoted strings. | |
| 3.1.2.5 Locale-Specific Translation | How to translate strings into different languages. |
Quoting is used to remove the special meaning of certain characters or words to the shell. Quoting can be used to disable special treatment for special characters, to prevent reserved words from being recognized as such, and to prevent parameter expansion.
Each of the shell metacharacters (see section Definitions) has special meaning to the shell and must be quoted if it is to represent itself. When the command history expansion facilities are being used (see section History Expansion), the history expansion character, usually ‘!’, must be quoted to prevent history expansion. See section Bash History Facilities, for more details concerning history expansion.
There are three quoting mechanisms: the escape character, single quotes, and double quotes.
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A non-quoted backslash ‘\’ is the Bash escape character.
It preserves the literal value of the next character that follows,
with the exception of newline. If a \newline pair
appears, and the backslash itself is not quoted, the \newline
is treated as a line continuation (that is, it is removed from
the input stream and effectively ignored).
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Enclosing characters in single quotes (‘'’) preserves the literal value of each character within the quotes. A single quote may not occur between single quotes, even when preceded by a backslash.
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Enclosing characters in double quotes (‘"’) preserves the literal value
of all characters within the quotes, with the exception of
‘$’, ‘`’, ‘\’,
and, when history expansion is enabled, ‘!’.
The characters ‘$’ and ‘`’
retain their special meaning within double quotes (see section Shell Expansions).
The backslash retains its special meaning only when followed by one of
the following characters:
‘$’, ‘`’, ‘"’, ‘\’, or newline.
Within double quotes, backslashes that are followed by one of these
characters are removed. Backslashes preceding characters without a
special meaning are left unmodified.
A double quote may be quoted within double quotes by preceding it with
a backslash.
If enabled, history expansion will be performed unless an ‘!’
appearing in double quotes is escaped using a backslash.
The backslash preceding the ‘!’ is not removed.
The special parameters ‘*’ and ‘@’ have special meaning when in double quotes (see section Shell Parameter Expansion).
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Words of the form $'string' are treated specially. The
word expands to string, with backslash-escaped characters replaced
as specified by the ANSI C standard. Backslash escape sequences, if
present, are decoded as follows:
\aalert (bell)
\bbackspace
\e\Ean escape character (not ANSI C)
\fform feed
\nnewline
\rcarriage return
\thorizontal tab
\vvertical tab
\\backslash
\'single quote
\"double quote
\nnnthe eight-bit character whose value is the octal value nnn (one to three digits)
\xHHthe eight-bit character whose value is the hexadecimal value HH (one or two hex digits)
\uHHHHthe Unicode (ISO/IEC 10646) character whose value is the hexadecimal value HHHH (one to four hex digits)
\UHHHHHHHHthe Unicode (ISO/IEC 10646) character whose value is the hexadecimal value HHHHHHHH (one to eight hex digits)
\cxa control-x character
The expanded result is single-quoted, as if the dollar sign had not been present.
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A double-quoted string preceded by a dollar sign (‘$’) will cause
the string to be translated according to the current locale.
If the current locale is C or POSIX, the dollar sign
is ignored.
If the string is translated and replaced, the replacement is
double-quoted.
Some systems use the message catalog selected by the LC_MESSAGES
shell variable. Others create the name of the message catalog from the
value of the TEXTDOMAIN shell variable, possibly adding a
suffix of ‘.mo’. If you use the TEXTDOMAIN variable, you
may need to set the TEXTDOMAINDIR variable to the location of
the message catalog files. Still others use both variables in this
fashion:
TEXTDOMAINDIR/LC_MESSAGES/LC_MESSAGES/TEXTDOMAIN.mo.
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In a non-interactive shell, or an interactive shell in which the
interactive_comments option to the shopt
builtin is enabled (see section The Shopt Builtin),
a word beginning with ‘#’
causes that word and all remaining characters on that line to
be ignored. An interactive shell without the interactive_comments
option enabled does not allow comments. The interactive_comments
option is on by default in interactive shells.
See section Interactive Shells, for a description of what makes
a shell interactive.
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A simple shell command such as echo a b c consists of the command
itself followed by arguments, separated by spaces.
More complex shell commands are composed of simple commands arranged together in a variety of ways: in a pipeline in which the output of one command becomes the input of a second, in a loop or conditional construct, or in some other grouping.
| 3.2.1 Simple Commands | The most common type of command. | |
| 3.2.2 Pipelines | Connecting the input and output of several commands. | |
| 3.2.3 Lists of Commands | How to execute commands sequentially. | |
| 3.2.4 Compound Commands | Shell commands for control flow. | |
| 3.2.5 Coprocesses | Two-way communication between commands. | |
| 3.2.6 GNU Parallel | Running commands in parallel. |
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A simple command is the kind of command encountered most often.
It’s just a sequence of words separated by blanks, terminated
by one of the shell’s control operators (see section Definitions). The
first word generally specifies a command to be executed, with the
rest of the words being that command’s arguments.
The return status (see section Exit Status) of a simple command is
its exit status as provided
by the POSIX 1003.1 waitpid function, or 128+n if
the command was terminated by signal n.
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A pipeline is a sequence of simple commands separated by one of
the control operators ‘|’ or ‘|&’.
The format for a pipeline is
[time [-p]] [!] command1 [ | or |& command2 ] … |
The output of each command in the pipeline is connected via a pipe to the input of the next command. That is, each command reads the previous command’s output. This connection is performed before any redirections specified by the command.
If ‘|&’ is used, command1’s standard error, in addition to
its standard output, is connected to
command2’s standard input through the pipe;
it is shorthand for 2>&1 |.
This implicit redirection of the standard error to the standard output is
performed after any redirections specified by the command.
The reserved word time causes timing statistics
to be printed for the pipeline once it finishes.
The statistics currently consist of elapsed (wall-clock) time and
user and system time consumed by the command’s execution.
The ‘-p’ option changes the output format to that specified
by POSIX.
When the shell is in POSIX mode (see section Bash POSIX Mode),
it does not recognize time as a reserved word if the next
token begins with a ‘-’.
The TIMEFORMAT variable may be set to a format string that
specifies how the timing information should be displayed.
See section Bash Variables, for a description of the available formats.
The use of time as a reserved word permits the timing of
shell builtins, shell functions, and pipelines. An external
time command cannot time these easily.
When the shell is in POSIX mode (see section Bash POSIX Mode), time
may be followed by a newline. In this case, the shell displays the
total user and system time consumed by the shell and its children.
The TIMEFORMAT variable may be used to specify the format of
the time information.
If the pipeline is not executed asynchronously (see section Lists of Commands), the shell waits for all commands in the pipeline to complete.
Each command in a pipeline is executed in its own subshell
(see section Command Execution Environment). The exit
status of a pipeline is the exit status of the last command in the
pipeline, unless the pipefail option is enabled
(see section The Set Builtin).
If pipefail is enabled, the pipeline’s return status is the
value of the last (rightmost) command to exit with a non-zero status,
or zero if all commands exit successfully.
If the reserved word ‘!’ precedes the pipeline, the
exit status is the logical negation of the exit status as described
above.
The shell waits for all commands in the pipeline to terminate before
returning a value.
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A list is a sequence of one or more pipelines separated by one
of the operators ‘;’, ‘&’, ‘&&’, or ‘||’,
and optionally terminated by one of ‘;’, ‘&’, or a
newline.
Of these list operators, ‘&&’ and ‘||’ have equal precedence, followed by ‘;’ and ‘&’, which have equal precedence.
A sequence of one or more newlines may appear in a list
to delimit commands, equivalent to a semicolon.
If a command is terminated by the control operator ‘&’,
the shell executes the command asynchronously in a subshell.
This is known as executing the command in the background.
The shell does not wait for the command to finish, and the return
status is 0 (true).
When job control is not active (see section Job Control),
the standard input for asynchronous commands, in the absence of any
explicit redirections, is redirected from /dev/null.
Commands separated by a ‘;’ are executed sequentially; the shell waits for each command to terminate in turn. The return status is the exit status of the last command executed.
AND and OR lists are sequences of one or more pipelines separated by the control operators ‘&&’ and ‘||’, respectively. AND and OR lists are executed with left associativity.
An AND list has the form
command1 && command2 |
command2 is executed if, and only if, command1 returns an exit status of zero.
An OR list has the form
command1 || command2 |
command2 is executed if, and only if, command1 returns a non-zero exit status.
The return status of AND and OR lists is the exit status of the last command executed in the list.
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| 3.2.4.1 Looping Constructs | Shell commands for iterative action. | |
| 3.2.4.2 Conditional Constructs | Shell commands for conditional execution. | |
| 3.2.4.3 Grouping Commands | Ways to group commands. |
Compound commands are the shell programming constructs. Each construct begins with a reserved word or control operator and is terminated by a corresponding reserved word or operator. Any redirections (see section Redirections) associated with a compound command apply to all commands within that compound command unless explicitly overridden.
In most cases a list of commands in a compound command’s description may be separated from the rest of the command by one or more newlines, and may be followed by a newline in place of a semicolon.
Bash provides looping constructs, conditional commands, and mechanisms to group commands and execute them as a unit.
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Bash supports the following looping constructs.
Note that wherever a ‘;’ appears in the description of a command’s syntax, it may be replaced with one or more newlines.
untilThe syntax of the until command is:
until test-commands; do consequent-commands; done |
Execute consequent-commands as long as test-commands has an exit status which is not zero. The return status is the exit status of the last command executed in consequent-commands, or zero if none was executed.
whileThe syntax of the while command is:
while test-commands; do consequent-commands; done |
Execute consequent-commands as long as test-commands has an exit status of zero. The return status is the exit status of the last command executed in consequent-commands, or zero if none was executed.
forThe syntax of the for command is:
for name [ [in [words …] ] ; ] do commands; done |
Expand words, and execute commands once for each member
in the resultant list, with name bound to the current member.
If ‘in words’ is not present, the for command
executes the commands once for each positional parameter that is
set, as if ‘in "$@"’ had been specified
(see section Special Parameters).
The return status is the exit status of the last command that executes.
If there are no items in the expansion of words, no commands are
executed, and the return status is zero.
An alternate form of the for command is also supported:
for (( expr1 ; expr2 ; expr3 )) ; do commands ; done |
First, the arithmetic expression expr1 is evaluated according to the rules described below (see section Shell Arithmetic). The arithmetic expression expr2 is then evaluated repeatedly until it evaluates to zero. Each time expr2 evaluates to a non-zero value, commands are executed and the arithmetic expression expr3 is evaluated. If any expression is omitted, it behaves as if it evaluates to 1. The return value is the exit status of the last command in commands that is executed, or false if any of the expressions is invalid.
The break and continue builtins (see section Bourne Shell Builtins)
may be used to control loop execution.
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ifThe syntax of the if command is:
if test-commands; then consequent-commands; [elif more-test-commands; then more-consequents;] [else alternate-consequents;] fi |
The test-commands list is executed, and if its return status is zero,
the consequent-commands list is executed.
If test-commands returns a non-zero status, each elif list
is executed in turn, and if its exit status is zero,
the corresponding more-consequents is executed and the
command completes.
If ‘else alternate-consequents’ is present, and
the final command in the final if or elif clause
has a non-zero exit status, then alternate-consequents is executed.
The return status is the exit status of the last command executed, or
zero if no condition tested true.
caseThe syntax of the case command is:
case word in [ [(] pattern [| pattern]…) command-list ;;]… esac |
case will selectively execute the command-list corresponding to
the first pattern that matches word.
If the shell option nocasematch
(see the description of shopt in The Shopt Builtin)
is enabled, the match is performed without regard to the case
of alphabetic characters.
The ‘|’ is used to separate multiple patterns, and the ‘)’
operator terminates a pattern list.
A list of patterns and an associated command-list is known
as a clause.
Each clause must be terminated with ‘;;’, ‘;&’, or ‘;;&’. The word undergoes tilde expansion, parameter expansion, command substitution, arithmetic expansion, and quote removal before matching is attempted. Each pattern undergoes tilde expansion, parameter expansion, command substitution, and arithmetic expansion.
There may be an arbitrary number of case clauses, each terminated
by a ‘;;’, ‘;&’, or ‘;;&’.
The first pattern that matches determines the
command-list that is executed.
It’s a common idiom to use ‘*’ as the final pattern to define the
default case, since that pattern will always match.
Here is an example using case in a script that could be used to
describe one interesting feature of an animal:
echo -n "Enter the name of an animal: " read ANIMAL echo -n "The $ANIMAL has " case $ANIMAL in horse | dog | cat) echo -n "four";; man | kangaroo ) echo -n "two";; *) echo -n "an unknown number of";; esac echo " legs." |
If the ‘;;’ operator is used, no subsequent matches are attempted after the first pattern match. Using ‘;&’ in place of ‘;;’ causes execution to continue with the command-list associated with the next clause, if any. Using ‘;;&’ in place of ‘;;’ causes the shell to test the patterns in the next clause, if any, and execute any associated command-list on a successful match.
The return status is zero if no pattern is matched. Otherwise, the return status is the exit status of the command-list executed.
selectThe select construct allows the easy generation of menus.
It has almost the same syntax as the for command:
select name [in words …]; do commands; done |
The list of words following in is expanded, generating a list
of items. The set of expanded words is printed on the standard
error output stream, each preceded by a number. If the
‘in words’ is omitted, the positional parameters are printed,
as if ‘in "$@"’ had been specified.
The PS3 prompt is then displayed and a line is read from the
standard input.
If the line consists of a number corresponding to one of the displayed
words, then the value of name is set to that word.
If the line is empty, the words and prompt are displayed again.
If EOF is read, the select command completes.
Any other value read causes name to be set to null.
The line read is saved in the variable REPLY.
The commands are executed after each selection until a
break command is executed, at which
point the select command completes.
Here is an example that allows the user to pick a filename from the current directory, and displays the name and index of the file selected.
select fname in *; do echo you picked $fname \($REPLY\) break; done |
((…))(( expression )) |
The arithmetic expression is evaluated according to the rules described below (see section Shell Arithmetic). If the value of the expression is non-zero, the return status is 0; otherwise the return status is 1. This is exactly equivalent to
let "expression" |
See section Bash Builtin Commands, for a full description of the let builtin.
[[…]][[ expression ]] |
Return a status of 0 or 1 depending on the evaluation of
the conditional expression expression.
Expressions are composed of the primaries described below in
Bash Conditional Expressions.
Word splitting and filename expansion are not performed on the words
between the [[ and ]]; tilde expansion, parameter and
variable expansion, arithmetic expansion, command substitution, process
substitution, and quote removal are performed.
Conditional operators such as ‘-f’ must be unquoted to be recognized
as primaries.
When used with [[, the ‘<’ and ‘>’ operators sort
lexicographically using the current locale.
When the ‘==’ and ‘!=’ operators are used, the string to the
right of the operator is considered a pattern and matched according
to the rules described below in Pattern Matching,
as if the extglob shell option were enabled.
The ‘=’ operator is identical to ‘==’.
If the shell option nocasematch
(see the description of shopt in The Shopt Builtin)
is enabled, the match is performed without regard to the case
of alphabetic characters.
The return value is 0 if the string matches (‘==’) or does not
match (‘!=’)the pattern, and 1 otherwise.
Any part of the pattern may be quoted to force the quoted portion
to be matched as a string.
An additional binary operator, ‘=~’, is available, with the same
precedence as ‘==’ and ‘!=’.
When it is used, the string to the right of the operator is considered
an extended regular expression and matched accordingly (as in regex3)).
The return value is 0 if the string matches
the pattern, and 1 otherwise.
If the regular expression is syntactically incorrect, the conditional
expression’s return value is 2.
If the shell option nocasematch
(see the description of shopt in The Shopt Builtin)
is enabled, the match is performed without regard to the case
of alphabetic characters.
Any part of the pattern may be quoted to force the quoted portion
to be matched as a string.
Bracket expressions in regular expressions must be treated carefully,
since normal quoting characters lose their meanings between brackets.
If the pattern is stored in a shell variable, quoting the variable
expansion forces the entire pattern to be matched as a string.
Substrings matched by parenthesized subexpressions within the regular
expression are saved in the array variable BASH_REMATCH.
The element of BASH_REMATCH with index 0 is the portion of the string
matching the entire regular expression.
The element of BASH_REMATCH with index n is the portion of the
string matching the nth parenthesized subexpression.
For example, the following will match a line (stored in the shell variable line) if there is a sequence of characters in the value consisting of any number, including zero, of space characters, zero or one instances of ‘a’, then a ‘b’:
[[ $line =~ [[:space:]]*(a)?b ]] |
That means values like ‘aab’ and ‘ aaaaaab’ will match, as will a line containing a ‘b’ anywhere in its value.
Storing the regular expression in a shell variable is often a useful way to avoid problems with quoting characters that are special to the shell. It is sometimes difficult to specify a regular expression literally without using quotes, or to keep track of the quoting used by regular expressions while paying attention to the shell’s quote removal. Using a shell variable to store the pattern decreases these problems. For example, the following is equivalent to the above:
pattern='[[:space:]]*(a)?b' [[ $line =~ $pattern ]] |
If you want to match a character that’s special to the regular expression grammar, it has to be quoted to remove its special meaning. This means that in the pattern ‘xxx.txt’, the ‘.’ matches any character in the string (its usual regular expression meaning), but in the pattern ‘"xxx.txt"’ it can only match a literal ‘.’. Shell programmers should take special care with backslashes, since backslashes are used both by the shell and regular expressions to remove the special meaning from the following character. The following two sets of commands are not equivalent:
pattern='\.' [[ . =~ $pattern ]] [[ . =~ \. ]] [[ . =~ "$pattern" ]] [[ . =~ '\.' ]] |
The first two matches will succeed, but the second two will not, because in the second two the backslash will be part of the pattern to be matched. In the first two examples, the backslash removes the special meaning from ‘.’, so the literal ‘.’ matches. If the string in the first examples were anything other than ‘.’, say ‘a’, the pattern would not match, because the quoted ‘.’ in the pattern loses its special meaning of matching any single character.
Expressions may be combined using the following operators, listed in decreasing order of precedence:
( expression )Returns the value of expression. This may be used to override the normal precedence of operators.
! expressionTrue if expression is false.
expression1 && expression2True if both expression1 and expression2 are true.
expression1 || expression2True if either expression1 or expression2 is true.
The && and || operators do not evaluate expression2 if the
value of expression1 is sufficient to determine the return
value of the entire conditional expression.
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Bash provides two ways to group a list of commands to be executed as a unit. When commands are grouped, redirections may be applied to the entire command list. For example, the output of all the commands in the list may be redirected to a single stream.
()( list ) |
Placing a list of commands between parentheses causes a subshell environment to be created (see section Command Execution Environment), and each of the commands in list to be executed in that subshell. Since the list is executed in a subshell, variable assignments do not remain in effect after the subshell completes.
{}{ list; }
|
Placing a list of commands between curly braces causes the list to be executed in the current shell context. No subshell is created. The semicolon (or newline) following list is required.
In addition to the creation of a subshell, there is a subtle difference
between these two constructs due to historical reasons. The braces
are reserved words, so they must be separated from the list
by blanks or other shell metacharacters.
The parentheses are operators, and are
recognized as separate tokens by the shell even if they are not separated
from the list by whitespace.
The exit status of both of these constructs is the exit status of list.
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A coprocess is a shell command preceded by the coproc
reserved word.
A coprocess is executed asynchronously in a subshell, as if the command
had been terminated with the ‘&’ control operator, with a two-way pipe
established between the executing shell and the coprocess.
The format for a coprocess is:
coproc [NAME] command [redirections] |
This creates a coprocess named NAME. If NAME is not supplied, the default name is COPROC. NAME must not be supplied if command is a simple command (see section Simple Commands); otherwise, it is interpreted as the first word of the simple command.
When the coprocess is executed, the shell creates an array variable
(see section Arrays)
named NAME in the context of the executing shell.
The standard output of command
is connected via a pipe to a file descriptor in the executing shell,
and that file descriptor is assigned to NAME[0].
The standard input of command
is connected via a pipe to a file descriptor in the executing shell,
and that file descriptor is assigned to NAME[1].
This pipe is established before any redirections specified by the
command (see section Redirections).
The file descriptors can be utilized as arguments to shell commands
and redirections using standard word expansions.
The file descriptors are not available in subshells.
The process ID of the shell spawned to execute the coprocess is
available as the value of the variable NAME_PID.
The wait
builtin command may be used to wait for the coprocess to terminate.
Since the coprocess is created as an asynchronous command,
the coproc command always returns success.
The return status of a coprocess is the exit status of command.
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There are ways to run commands in parallel that are not built into Bash. GNU Parallel is a tool to do just that.
GNU Parallel, as its name suggests, can be used to build and run commands
in parallel. You may run the same command with different arguments, whether
they are filenames, usernames, hostnames, or lines read from files. GNU
Parallel provides shorthand references to many of the most common operations
(input lines, various portions of the input line, different ways to specify
the input source, and so on). Parallel can replace xargs or feed
commands from its input sources to several different instances of Bash.
For a complete description, refer to the GNU Parallel documentation. A few examples should provide a brief introduction to its use.
For example, it is easy to replace xargs to gzip all html files in the
current directory and its subdirectories:
find . -type f -name '*.html' -print | parallel gzip |
If you need to protect special characters such as newlines in file names, use find’s ‘-print0’ option and parallel’s ‘-0’ option.
You can use Parallel to move files from the current directory when the
number of files is too large to process with one mv invocation:
ls | parallel mv {} destdir
|
As you can see, the {} is replaced with each line read from standard input.
While using ls will work in most instances, it is not sufficient to
deal with all filenames.
If you need to accommodate special characters in filenames, you can use
find . -depth 1 \! -name '.*' -print0 | parallel -0 mv {} destdir
|
as alluded to above.
This will run as many mv commands as there are files in the current
directory.
You can emulate a parallel xargs by adding the ‘-X’ option:
find . -depth 1 \! -name '.*' -print0 | parallel -0 -X mv {} destdir
|
GNU Parallel can replace certain common idioms that operate on lines read from a file (in this case, filenames listed one per line):
while IFS= read -r x; do do-something1 "$x" "config-$x" do-something2 < "$x" done < file | process-output |
with a more compact syntax reminiscent of lambdas:
cat list | parallel "do-something1 {} config-{} ; do-something2 < {}" | process-output
|
Parallel provides a built-in mechanism to remove filename extensions, which lends itself to batch file transformations or renaming:
ls *.gz | parallel -j+0 "zcat {} | bzip2 >{.}.bz2 && rm {}"
|
This will recompress all files in the current directory with names ending
in .gz using bzip2, running one job per CPU (-j+0) in parallel.
(We use ls for brevity here; using find as above is more
robust in the face of filenames containing unexpected characters.)
Parallel can take arguments from the command line; the above can also be
written as
parallel "zcat {} | bzip2 >{.}.bz2 && rm {}" ::: *.gz
|
If a command generates output, you may want to preserve the input order in the output. For instance, the following command
{ echo foss.org.my ; echo debian.org; echo freenetproject.org; } | parallel traceroute
|
will display as output the traceroute invocation that finishes first. Adding the ‘-k’ option
{ echo foss.org.my ; echo debian.org; echo freenetproject.org; } | parallel -k traceroute
|
will ensure that the output of traceroute foss.org.my is displayed first.
Finally, Parallel can be used to run a sequence of shell commands in parallel, similar to ‘cat file | bash’. It is not uncommon to take a list of filenames, create a series of shell commands to operate on them, and feed that list of commnds to a shell. Parallel can speed this up. Assuming that ‘file’ contains a list of shell commands, one per line,
parallel -j 10 < file |
will evaluate the commands using the shell (since no explicit command is supplied as an argument), in blocks of ten shell jobs at a time.
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Shell functions are a way to group commands for later execution using a single name for the group. They are executed just like a "regular" command. When the name of a shell function is used as a simple command name, the list of commands associated with that function name is executed. Shell functions are executed in the current shell context; no new process is created to interpret them.
Functions are declared using this syntax:
name () compound-command [ redirections ] |
or
function name [()] compound-command [ redirections ] |
This defines a shell function named name. The reserved
word function is optional.
If the function reserved
word is supplied, the parentheses are optional.
The body of the function is the compound command
compound-command (see section Compound Commands).
That command is usually a list enclosed between { and }, but
may be any compound command listed above.
compound-command is executed whenever name is specified as the
name of a command.
When the shell is in POSIX mode (see section Bash POSIX Mode),
name may not be the same as one of the special builtins
(see section Special Builtins).
Any redirections (see section Redirections) associated with the shell function
are performed when the function is executed.
A function definition may be deleted using the ‘-f’ option to the
unset builtin (see section Bourne Shell Builtins).
The exit status of a function definition is zero unless a syntax error occurs or a readonly function with the same name already exists. When executed, the exit status of a function is the exit status of the last command executed in the body.
Note that for historical reasons, in the most common usage the curly braces
that surround the body of the function must be separated from the body by
blanks or newlines.
This is because the braces are reserved words and are only recognized
as such when they are separated from the command list
by whitespace or another shell metacharacter.
Also, when using the braces, the list must be terminated by a semicolon,
a ‘&’, or a newline.
When a function is executed, the arguments to the
function become the positional parameters
during its execution (see section Positional Parameters).
The special parameter ‘#’ that expands to the number of
positional parameters is updated to reflect the change.
Special parameter 0 is unchanged.
The first element of the FUNCNAME variable is set to the
name of the function while the function is executing.
All other aspects of the shell execution
environment are identical between a function and its caller
with these exceptions:
the DEBUG and RETURN traps
are not inherited unless the function has been given the
trace attribute using the declare builtin or
the -o functrace option has been enabled with
the set builtin,
(in which case all functions inherit the DEBUG and RETURN traps),
and the ERR trap is not inherited unless the -o errtrace
shell option has been enabled.
See section Bourne Shell Builtins, for the description of the
trap builtin.
The FUNCNEST variable, if set to a numeric value greater
than 0, defines a maximum function nesting level. Function
invocations that exceed the limit cause the entire command to
abort.
If the builtin command return
is executed in a function, the function completes and
execution resumes with the next command after the function
call.
Any command associated with the RETURN trap is executed
before execution resumes.
When a function completes, the values of the
positional parameters and the special parameter ‘#’
are restored to the values they had prior to the function’s
execution. If a numeric argument is given to return,
that is the function’s return status; otherwise the function’s
return status is the exit status of the last command executed
before the return.
Variables local to the function may be declared with the
local builtin. These variables are visible only to
the function and the commands it invokes.
Function names and definitions may be listed with the
‘-f’ option to the declare (typeset)
builtin command (see section Bash Builtin Commands).
The ‘-F’ option to declare or typeset
will list the function names only
(and optionally the source file and line number, if the extdebug
shell option is enabled).
Functions may be exported so that subshells
automatically have them defined with the
‘-f’ option to the export builtin
(see section Bourne Shell Builtins).
Note that shell functions and variables with the same name may result
in multiple identically-named entries in the environment passed to the
shell’s children.
Care should be taken in cases where this may cause a problem.
Functions may be recursive.
The FUNCNEST variable may be used to limit the depth of the
function call stack and restrict the number of function invocations.
By default, no limit is placed on the number of recursive calls.
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| 3.4.1 Positional Parameters | The shell’s command-line arguments. | |
| 3.4.2 Special Parameters | Parameters denoted by special characters. |
A parameter is an entity that stores values.
It can be a name, a number, or one of the special characters
listed below.
A variable is a parameter denoted by a name.
A variable has a value and zero or more attributes.
Attributes are assigned using the declare builtin command
(see the description of the declare builtin in Bash Builtin Commands).
A parameter is set if it has been assigned a value. The null string is
a valid value. Once a variable is set, it may be unset only by using
the unset builtin command.
A variable may be assigned to by a statement of the form
name=[value] |
If value
is not given, the variable is assigned the null string. All
values undergo tilde expansion, parameter and variable expansion,
command substitution, arithmetic expansion, and quote
removal (detailed below). If the variable has its integer
attribute set, then value
is evaluated as an arithmetic expression even if the $((…))
expansion is not used (see section Arithmetic Expansion).
Word splitting is not performed, with the exception
of "$@" as explained below.
Filename expansion is not performed.
Assignment statements may also appear as arguments to the
alias,
declare, typeset, export, readonly,
and local builtin commands.
When in POSIX mode (see section Bash POSIX Mode), these builtins may appear
in a command after one or more instances of the command builtin
and retain these assignment statement properties.
In the context where an assignment statement is assigning a value to a shell variable or array index (see section Arrays), the ‘+=’ operator can be used to append to or add to the variable’s previous value. When ‘+=’ is applied to a variable for which the integer attribute has been set, value is evaluated as an arithmetic expression and added to the variable’s current value, which is also evaluated. When ‘+=’ is applied to an array variable using compound assignment (see section Arrays), the variable’s value is not unset (as it is when using ‘=’), and new values are appended to the array beginning at one greater than the array’s maximum index (for indexed arrays), or added as additional key-value pairs in an associative array. When applied to a string-valued variable, value is expanded and appended to the variable’s value.
A variable can be assigned the nameref attribute using the ‘-n’ option to the \fBdeclare\fP or \fBlocal\fP builtin commands (see section Bash Builtin Commands) to create a nameref, or a reference to another variable. This allows variables to be manipulated indirectly. Whenever the nameref variable is referenced or assigned to, the operation is actually performed on the variable specified by the nameref variable’s value. A nameref is commonly used within shell functions to refer to a variable whose name is passed as an argument to the function. For instance, if a variable name is passed to a shell function as its first argument, running
declare -n ref=$1 |
inside the function creates a nameref variable ref whose value is
the variable name passed as the first argument.
References and assignments to ref are treated as references and
assignments to the variable whose name was passed as $1.
If the control variable in a for loop has the nameref attribute,
the list of words can be a list of shell variables, and a name reference
will be established for each word in the list, in turn, when the loop is
executed.
Array variables cannot be given the ‘-n’ attribute.
However, nameref variables can reference array variables and subscripted
array variables.
Namerefs can be unset using the ‘-n’ option to the unset builtin
(see section Bourne Shell Builtins).
Otherwise, if unset is executed with the name of a nameref variable
as an argument, the variable referenced by the nameref variable will be unset.
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A positional parameter is a parameter denoted by one or more
digits, other than the single digit 0. Positional parameters are
assigned from the shell’s arguments when it is invoked,
and may be reassigned using the set builtin command.
Positional parameter N may be referenced as ${N}, or
as $N when N consists of a single digit.
Positional parameters may not be assigned to with assignment statements.
The set and shift builtins are used to set and
unset them (see section Shell Builtin Commands).
The positional parameters are
temporarily replaced when a shell function is executed
(see section Shell Functions).
When a positional parameter consisting of more than a single digit is expanded, it must be enclosed in braces.
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The shell treats several parameters specially. These parameters may only be referenced; assignment to them is not allowed.
*
($*) Expands to the positional parameters, starting from one.
When the expansion is not within double quotes, each positional parameter
expands to a separate word.
In contexts where it is performed, those words
are subject to further word splitting and pathname expansion.
When the expansion occurs within double quotes, it expands to a single word
with the value of each parameter separated by the first character
of the IFS
special variable. That is, "$*" is equivalent
to "$1c$2c…", where c
is the first character of the value of the IFS
variable.
If IFS is unset, the parameters are separated by spaces.
If IFS is null, the parameters are joined without intervening
separators.
@
($@) Expands to the positional parameters, starting from one. When the
expansion occurs within double quotes, each parameter expands to a
separate word. That is, "$@" is equivalent to
"$1" "$2" ….
If the double-quoted expansion occurs within a word, the expansion of
the first parameter is joined with the beginning part of the original
word, and the expansion of the last parameter is joined with the last
part of the original word.
When there are no positional parameters, "$@" and
$@
expand to nothing (i.e., they are removed).
#
($#) Expands to the number of positional parameters in decimal.
?
($?) Expands to the exit status of the most recently executed foreground pipeline.
-
($-, a hyphen.) Expands to the current option flags as specified upon
invocation, by the set
builtin command, or those set by the shell itself
(such as the ‘-i’ option).
$
($$) Expands to the process ID of the shell. In a () subshell, it
expands to the process ID of the invoking shell, not the subshell.
!
($!) Expands to the process ID of the job most recently placed into the
background, whether executed as an asynchronous command or using
the bg builtin (see section Job Control Builtins).
0
($0) Expands to the name of the shell or shell script. This is set at
shell initialization. If Bash is invoked with a file of commands
(see section Shell Scripts), $0 is set to the name of that file.
If Bash is started with the ‘-c’ option (see section Invoking Bash),
then $0 is set to the first argument after the string to be
executed, if one is present. Otherwise, it is set
to the filename used to invoke Bash, as given by argument zero.
_
($_, an underscore.) At shell startup, set to the absolute pathname used to invoke the shell or shell script being executed as passed in the environment or argument list. Subsequently, expands to the last argument to the previous command, after expansion. Also set to the full pathname used to invoke each command executed and placed in the environment exported to that command. When checking mail, this parameter holds the name of the mail file.
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Expansion is performed on the command line after it has been split into
tokens. There are seven kinds of expansion performed:
| 3.5.1 Brace Expansion | Expansion of expressions within braces. | |
| 3.5.2 Tilde Expansion | Expansion of the ~ character. | |
| 3.5.3 Shell Parameter Expansion | How Bash expands variables to their values. | |
| 3.5.4 Command Substitution | Using the output of a command as an argument. | |
| 3.5.5 Arithmetic Expansion | How to use arithmetic in shell expansions. | |
| 3.5.6 Process Substitution | A way to write and read to and from a command. | |
| 3.5.7 Word Splitting | How the results of expansion are split into separate arguments. | |
| 3.5.8 Filename Expansion | A shorthand for specifying filenames matching patterns. | |
| 3.5.9 Quote Removal | How and when quote characters are removed from words. |
The order of expansions is: brace expansion; tilde expansion, parameter and variable expansion, arithmetic expansion, and command substitution (done in a left-to-right fashion); word splitting; and filename expansion.
On systems that can support it, there is an additional expansion available: process substitution. This is performed at the same time as tilde, parameter, variable, and arithmetic expansion and command substitution.
Only brace expansion, word splitting, and filename expansion
can change the number of words of the expansion; other expansions
expand a single word to a single word.
The only exceptions to this are the expansions of
"$@" (see section Special Parameters) and "${name[@]}"
(see section Arrays).
After all expansions, quote removal (see section Quote Removal)
is performed.
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Brace expansion is a mechanism by which arbitrary strings may be generated. This mechanism is similar to filename expansion (see section Filename Expansion), but the filenames generated need not exist. Patterns to be brace expanded take the form of an optional preamble, followed by either a series of comma-separated strings or a sequence expression between a pair of braces, followed by an optional postscript. The preamble is prefixed to each string contained within the braces, and the postscript is then appended to each resulting string, expanding left to right.
Brace expansions may be nested. The results of each expanded string are not sorted; left to right order is preserved. For example,
bash$ echo a{d,c,b}e
ade ace abe
|
A sequence expression takes the form {x..y[..incr]},
where x and y are either integers or single characters,
and incr, an optional increment, is an integer.
When integers are supplied, the expression expands to each number between
x and y, inclusive.
Supplied integers may be prefixed with ‘0’ to force each term to have the
same width.
When either x or y begins with a zero, the shell
attempts to force all generated terms to contain the same number of digits,
zero-padding where necessary.
When characters are supplied, the expression expands to each character
lexicographically between x and y, inclusive,
using the default C locale.
Note that both x and y must be of the same type.
When the increment is supplied, it is used as the difference between
each term. The default increment is 1 or -1 as appropriate.
Brace expansion is performed before any other expansions, and any characters special to other expansions are preserved in the result. It is strictly textual. Bash does not apply any syntactic interpretation to the context of the expansion or the text between the braces. To avoid conflicts with parameter expansion, the string ‘${’ is not considered eligible for brace expansion.
A correctly-formed brace expansion must contain unquoted opening and closing braces, and at least one unquoted comma or a valid sequence expression. Any incorrectly formed brace expansion is left unchanged.
A { or ‘,’ may be quoted with a backslash to prevent its being considered part of a brace expression. To avoid conflicts with parameter expansion, the string ‘${’ is not considered eligible for brace expansion.
This construct is typically used as shorthand when the common prefix of the strings to be generated is longer than in the above example:
mkdir /usr/local/src/bash/{old,new,dist,bugs}
|
or
chown root /usr/{ucb/{ex,edit},lib/{ex?.?*,how_ex}}
|
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If a word begins with an unquoted tilde character (‘~’), all of the
characters up to the first unquoted slash (or all characters,
if there is no unquoted slash) are considered a tilde-prefix.
If none of the characters in the tilde-prefix are quoted, the
characters in the tilde-prefix following the tilde are treated as a
possible login name.
If this login name is the null string, the tilde is replaced with the
value of the HOME shell variable.
If HOME is unset, the home directory of the user executing the
shell is substituted instead.
Otherwise, the tilde-prefix is replaced with the home directory
associated with the specified login name.
If the tilde-prefix is ‘~+’, the value of
the shell variable PWD replaces the tilde-prefix.
If the tilde-prefix is ‘~-’, the value of the shell variable
OLDPWD, if it is set, is substituted.
If the characters following the tilde in the tilde-prefix consist of a
number N, optionally prefixed by a ‘+’ or a ‘-’,
the tilde-prefix is replaced with the
corresponding element from the directory stack, as it would be displayed
by the dirs builtin invoked with the characters following tilde
in the tilde-prefix as an argument (see section The Directory Stack).
If the tilde-prefix, sans the tilde, consists of a number without a
leading ‘+’ or ‘-’, ‘+’ is assumed.
If the login name is invalid, or the tilde expansion fails, the word is left unchanged.
Each variable assignment is checked for unquoted tilde-prefixes immediately
following a ‘:’ or the first ‘=’.
In these cases, tilde expansion is also performed.
Consequently, one may use filenames with tildes in assignments to
PATH, MAILPATH, and CDPATH,
and the shell assigns the expanded value.
The following table shows how Bash treats unquoted tilde-prefixes:
~The value of $HOME
~/foo‘$HOME/foo’
~fred/fooThe subdirectory foo of the home directory of the user
fred
~+/foo‘$PWD/foo’
~-/foo‘${OLDPWD-'~-'}/foo’
~NThe string that would be displayed by ‘dirs +N’
~+NThe string that would be displayed by ‘dirs +N’
~-NThe string that would be displayed by ‘dirs -N’
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The ‘$’ character introduces parameter expansion, command substitution, or arithmetic expansion. The parameter name or symbol to be expanded may be enclosed in braces, which are optional but serve to protect the variable to be expanded from characters immediately following it which could be interpreted as part of the name.
When braces are used, the matching ending brace is the first ‘}’ not escaped by a backslash or within a quoted string, and not within an embedded arithmetic expansion, command substitution, or parameter expansion.
The basic form of parameter expansion is ${parameter}. The value of parameter is substituted. The parameter is a shell parameter as described above (see section Shell Parameters) or an array reference (see section Arrays). The braces are required when parameter is a positional parameter with more than one digit, or when parameter is followed by a character that is not to be interpreted as part of its name.
If the first character of parameter is an exclamation point (!),
it introduces a level of variable indirection.
Bash uses the value of the variable formed from the rest of
parameter as the name of the variable; this variable is then
expanded and that value is used in the rest of the substitution, rather
than the value of parameter itself.
This is known as indirect expansion.
The exceptions to this are the expansions of ${!prefix*}
and ${!name[@]}
described below.
The exclamation point must immediately follow the left brace in order to
introduce indirection.
In each of the cases below, word is subject to tilde expansion, parameter expansion, command substitution, and arithmetic expansion.
When not performing substring expansion, using the form described below (e.g., ‘:-’), Bash tests for a parameter that is unset or null. Omitting the colon results in a test only for a parameter that is unset. Put another way, if the colon is included, the operator tests for both parameter’s existence and that its value is not null; if the colon is omitted, the operator tests only for existence.
${parameter:-word}If parameter is unset or null, the expansion of word is substituted. Otherwise, the value of parameter is substituted.
${parameter:=word}If parameter is unset or null, the expansion of word is assigned to parameter. The value of parameter is then substituted. Positional parameters and special parameters may not be assigned to in this way.
${parameter:?word}If parameter is null or unset, the expansion of word (or a message to that effect if word is not present) is written to the standard error and the shell, if it is not interactive, exits. Otherwise, the value of parameter is substituted.
${parameter:+word}If parameter is null or unset, nothing is substituted, otherwise the expansion of word is substituted.
${parameter:offset}${parameter:offset:length}This is referred to as Substring Expansion. It expands to up to length characters of the value of parameter starting at the character specified by offset. If parameter is ‘@’, an indexed array subscripted by ‘@’ or ‘*’, or an associative array name, the results differ as described below. If length is omitted, it expands to the substring of the value of parameter starting at the character specified by offset and extending to the end of the value. length and offset are arithmetic expressions (see section Shell Arithmetic).
If offset evaluates to a number less than zero, the value is used as an offset in characters from the end of the value of parameter. If length evaluates to a number less than zero, it is interpreted as an offset in characters from the end of the value of parameter rather than a number of characters, and the expansion is the characters between offset and that result. Note that a negative offset must be separated from the colon by at least one space to avoid being confused with the ‘:-’ expansion.
Here are some examples illustrating substring expansion on parameters and subscripted arrays:
$ string=01234567890abcdefgh
$ echo ${string:7}
7890abcdefgh
$ echo ${string:7:0}
$ echo ${string:7:2}
78
$ echo ${string:7:-2}
7890abcdef
$ echo ${string: -7}
bcdefgh
$ echo ${string: -7:0}
$ echo ${string: -7:2}
bc
$ echo ${string: -7:-2}
bcdef
$ set -- 01234567890abcdefgh
$ echo ${1:7}
7890abcdefgh
$ echo ${1:7:0}
$ echo ${1:7:2}
78
$ echo ${1:7:-2}
7890abcdef
$ echo ${1: -7}
bcdefgh
$ echo ${1: -7:0}
$ echo ${1: -7:2}
bc
$ echo ${1: -7:-2}
bcdef
$ array[0]=01234567890abcdefgh
$ echo ${array[0]:7}
7890abcdefgh
$ echo ${array[0]:7:0}
$ echo ${array[0]:7:2}
78
$ echo ${array[0]:7:-2}
7890abcdef
$ echo ${array[0]: -7}
bcdefgh
$ echo ${array[0]: -7:0}
$ echo ${array[0]: -7:2}
bc
$ echo ${array[0]: -7:-2}
bcdef
If parameter is ‘@’, the result is length positional parameters beginning at offset. A negative offset is taken relative to one greater than the greatest positional parameter, so an offset of -1 evaluates to the last positional parameter. It is an expansion error if length evaluates to a number less than zero.
The following examples illustrate substring expansion using positional parameters:
$ set -- 1 2 3 4 5 6 7 8 9 0 a b c d e f g h
$ echo ${@:7}
7 8 9 0 a b c d e f g h
$ echo ${@:7:0}
$ echo ${@:7:2}
7 8
$ echo ${@:7:-2}
bash: -2: substring expression < 0
$ echo ${@: -7:2}
b c
$ echo ${@:0}
./bash 1 2 3 4 5 6 7 8 9 0 a b c d e f g h
$ echo ${@:0:2}
./bash 1
$ echo ${@: -7:0}
If parameter is an indexed array name subscripted
by ‘@’ or ‘*’, the result is the length
members of the array beginning with ${parameter[offset]}.
A negative offset is taken relative to one greater than the maximum
index of the specified array.
It is an expansion error if length evaluates to a number less than zero.
These examples show how you can use substring expansion with indexed arrays:
$ array=(0 1 2 3 4 5 6 7 8 9 0 a b c d e f g h)
$ echo ${array[@]:7}
7 8 9 0 a b c d e f g h
$ echo ${array[@]:7:2}
7 8
$ echo ${array[@]: -7:2}
b c
$ echo ${array[@]: -7:-2}
bash: -2: substring expression < 0
$ echo ${array[@]:0}
0 1 2 3 4 5 6 7 8 9 0 a b c d e f g h
$ echo ${array[@]:0:2}
0 1
$ echo ${array[@]: -7:0}
Substring expansion applied to an associative array produces undefined results.
Substring indexing is zero-based unless the positional parameters
are used, in which case the indexing starts at 1 by default.
If offset is 0, and the positional parameters are used, $@ is
prefixed to the list.
${!prefix*}${!prefix@}Expands to the names of variables whose names begin with prefix,
separated by the first character of the IFS special variable.
When ‘@’ is used and the expansion appears within double quotes, each
variable name expands to a separate word.
${!name[@]}${!name[*]}If name is an array variable, expands to the list of array indices (keys) assigned in name. If name is not an array, expands to 0 if name is set and null otherwise. When ‘@’ is used and the expansion appears within double quotes, each key expands to a separate word.
${#parameter}The length in characters of the expanded value of parameter is substituted. If parameter is ‘*’ or ‘@’, the value substituted is the number of positional parameters. If parameter is an array name subscripted by ‘*’ or ‘@’, the value substituted is the number of elements in the array. If parameter is an indexed array name subscripted by a negative number, that number is interpreted as relative to one greater than the maximum index of parameter, so negative indices count back from the end of the array, and an index of -1 references the last element.
${parameter#word}${parameter##word}The word is expanded to produce a pattern just as in filename expansion (see section Filename Expansion). If the pattern matches the beginning of the expanded value of parameter, then the result of the expansion is the expanded value of parameter with the shortest matching pattern (the ‘#’ case) or the longest matching pattern (the ‘##’ case) deleted. If parameter is ‘@’ or ‘*’, the pattern removal operation is applied to each positional parameter in turn, and the expansion is the resultant list. If parameter is an array variable subscripted with ‘@’ or ‘*’, the pattern removal operation is applied to each member of the array in turn, and the expansion is the resultant list.
${parameter%word}${parameter%%word}The word is expanded to produce a pattern just as in filename expansion. If the pattern matches a trailing portion of the expanded value of parameter, then the result of the expansion is the value of parameter with the shortest matching pattern (the ‘%’ case) or the longest matching pattern (the ‘%%’ case) deleted. If parameter is ‘@’ or ‘*’, the pattern removal operation is applied to each positional parameter in turn, and the expansion is the resultant list. If parameter is an array variable subscripted with ‘@’ or ‘*’, the pattern removal operation is applied to each member of the array in turn, and the expansion is the resultant list.
${parameter/pattern/string} The pattern is expanded to produce a pattern just as in
filename expansion.
Parameter is expanded and the longest match of pattern
against its value is replaced with string.
If pattern begins with ‘/’, all matches of pattern are
replaced with string. Normally only the first match is replaced.
If pattern begins with ‘#’, it must match at the beginning
of the expanded value of parameter.
If pattern begins with ‘%’, it must match at the end
of the expanded value of parameter.
If string is null, matches of pattern are deleted
and the / following pattern may be omitted.
If parameter is ‘@’ or ‘*’,
the substitution operation is applied to each positional
parameter in turn, and the expansion is the resultant list.
If parameter
is an array variable subscripted with ‘@’ or ‘*’,
the substitution operation is applied to each member of the
array in turn, and the expansion is the resultant list.
${parameter^pattern}${parameter^^pattern}${parameter,pattern}${parameter,,pattern}This expansion modifies the case of alphabetic characters in parameter. The pattern is expanded to produce a pattern just as in filename expansion. Each character in the expanded value of parameter is tested against pattern, and, if it matches the pattern, its case is converted. The pattern should not attempt to match more than one character. The ‘^’ operator converts lowercase letters matching pattern to uppercase; the ‘,’ operator converts matching uppercase letters to lowercase. The ‘^^’ and ‘,,’ expansions convert each matched character in the expanded value; the ‘^’ and ‘,’ expansions match and convert only the first character in the expanded value. If pattern is omitted, it is treated like a ‘?’, which matches every character. If parameter is ‘@’ or ‘*’, the case modification operation is applied to each positional parameter in turn, and the expansion is the resultant list. If parameter is an array variable subscripted with ‘@’ or ‘*’, the case modification operation is applied to each member of the array in turn, and the expansion is the resultant list.
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Command substitution allows the output of a command to replace the command itself. Command substitution occurs when a command is enclosed as follows:
$(command) |
or
`command` |
Bash performs the expansion by executing command and
replacing the command substitution with the standard output of the
command, with any trailing newlines deleted.
Embedded newlines are not deleted, but they may be removed during
word splitting.
The command substitution $(cat file) can be
replaced by the equivalent but faster $(< file).
When the old-style backquote form of substitution is used,
backslash retains its literal meaning except when followed by
‘$’, ‘`’, or ‘\’.
The first backquote not preceded by a backslash terminates the
command substitution.
When using the $(command) form, all characters between
the parentheses make up the command; none are treated specially.
Command substitutions may be nested. To nest when using the backquoted form, escape the inner backquotes with backslashes.
If the substitution appears within double quotes, word splitting and filename expansion are not performed on the results.
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Arithmetic expansion allows the evaluation of an arithmetic expression and the substitution of the result. The format for arithmetic expansion is:
$(( expression )) |
The expression is treated as if it were within double quotes, but a double quote inside the parentheses is not treated specially. All tokens in the expression undergo parameter and variable expansion, command substitution, and quote removal. The result is treated as the arithmetic expression to be evaluated. Arithmetic expansions may be nested.
The evaluation is performed according to the rules listed below (see section Shell Arithmetic). If the expression is invalid, Bash prints a message indicating failure to the standard error and no substitution occurs.
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Process substitution is supported on systems that support named pipes (FIFOs) or the ‘/dev/fd’ method of naming open files. It takes the form of
<(list) |
or
>(list) |
The process list is run with its input or output connected to a
FIFO or some file in ‘/dev/fd’. The name of this file is
passed as an argument to the current command as the result of the
expansion. If the >(list) form is used, writing to
the file will provide input for list. If the
<(list) form is used, the file passed as an
argument should be read to obtain the output of list.
Note that no space may appear between the < or >
and the left parenthesis, otherwise the construct would be interpreted
as a redirection.
When available, process substitution is performed simultaneously with parameter and variable expansion, command substitution, and arithmetic expansion.
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The shell scans the results of parameter expansion, command substitution, and arithmetic expansion that did not occur within double quotes for word splitting.
The shell treats each character of $IFS as a delimiter, and splits
the results of the other expansions into words using these characters
as field terminators.
If IFS is unset, or its value is exactly <space><tab><newline>,
the default, then sequences of
<space>, <tab>, and <newline>
at the beginning and end of the results of the previous
expansions are ignored, and any sequence of IFS
characters not at the beginning or end serves to delimit words.
If IFS has a value other than the default, then sequences of
the whitespace characters space and tab
are ignored at the beginning and end of the
word, as long as the whitespace character is in the
value of IFS (an IFS whitespace character).
Any character in IFS that is not IFS
whitespace, along with any adjacent IFS
whitespace characters, delimits a field. A sequence of IFS
whitespace characters is also treated as a delimiter.
If the value of IFS is null, no word splitting occurs.
Explicit null arguments ("" or '') are retained.
Unquoted implicit null arguments, resulting from the expansion of
parameters that have no values, are removed.
If a parameter with no value is expanded within double quotes, a
null argument results and is retained.
Note that if no expansion occurs, no splitting is performed.
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| 3.5.8.1 Pattern Matching | How the shell matches patterns. |
After word splitting, unless the ‘-f’ option has been set
(see section The Set Builtin), Bash scans each word for the characters
‘*’, ‘?’, and ‘[’.
If one of these characters appears, then the word is
regarded as a pattern,
and replaced with an alphabetically sorted list of
filenames matching the pattern (see section Pattern Matching).
If no matching filenames are found,
and the shell option nullglob is disabled, the word is left
unchanged.
If the nullglob option is set, and no matches are found, the word
is removed.
If the failglob shell option is set, and no matches are found,
an error message is printed and the command is not executed.
If the shell option nocaseglob is enabled, the match is performed
without regard to the case of alphabetic characters.
When a pattern is used for filename expansion, the character ‘.’
at the start of a filename or immediately following a slash
must be matched explicitly, unless the shell option dotglob is set.
When matching a filename, the slash character must always be
matched explicitly.
In other cases, the ‘.’ character is not treated specially.
See the description of shopt in The Shopt Builtin,
for a description of the nocaseglob, nullglob,
failglob, and dotglob options.
The GLOBIGNORE
shell variable may be used to restrict the set of filenames matching a
pattern. If GLOBIGNORE
is set, each matching filename that also matches one of the patterns in
GLOBIGNORE is removed from the list of matches. The filenames
‘.’ and ‘..’
are always ignored when GLOBIGNORE
is set and not null.
However, setting GLOBIGNORE to a non-null value has the effect of
enabling the dotglob
shell option, so all other filenames beginning with a
‘.’ will match.
To get the old behavior of ignoring filenames beginning with a
‘.’, make ‘.*’ one of the patterns in GLOBIGNORE.
The dotglob option is disabled when GLOBIGNORE
is unset.
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Any character that appears in a pattern, other than the special pattern characters described below, matches itself. The NUL character may not occur in a pattern. A backslash escapes the following character; the escaping backslash is discarded when matching. The special pattern characters must be quoted if they are to be matched literally.
The special pattern characters have the following meanings:
*Matches any string, including the null string.
When the globstar shell option is enabled, and ‘*’ is used in
a filename expansion context, two adjacent ‘*’s used as a single
pattern will match all files and zero or more directories and
subdirectories.
If followed by a ‘/’, two adjacent ‘*’s will match only
directories and subdirectories.
?Matches any single character.
[…]Matches any one of the enclosed characters. A pair of characters
separated by a hyphen denotes a range expression;
any character that falls between those two characters, inclusive,
using the current locale’s collating sequence and character set,
is matched. If the first character following the
‘[’ is a ‘!’ or a ‘^’
then any character not enclosed is matched. A ‘-’
may be matched by including it as the first or last character
in the set. A ‘]’ may be matched by including it as the first
character in the set.
The sorting order of characters in range expressions is determined by
the current locale and the values of the
LC_COLLATE and LC_ALL shell variables, if set.
For example, in the default C locale, ‘[a-dx-z]’ is equivalent to
‘[abcdxyz]’. Many locales sort characters in dictionary order, and in
these locales ‘[a-dx-z]’ is typically not equivalent to ‘[abcdxyz]’;
it might be equivalent to ‘[aBbCcDdxXyYz]’, for example. To obtain
the traditional interpretation of ranges in bracket expressions, you can
force the use of the C locale by setting the LC_COLLATE or
LC_ALL environment variable to the value ‘C’, or enable the
globasciiranges shell option.
Within ‘[’ and ‘]’, character classes can be specified
using the syntax
[:class:], where class is one of the
following classes defined in the POSIX standard:
alnum alpha ascii blank cntrl digit graph lower print punct space upper word xdigit |
A character class matches any character belonging to that class.
The word character class matches letters, digits, and the character
‘_’.
Within ‘[’ and ‘]’, an equivalence class can be
specified using the syntax [=c=], which
matches all characters with the same collation weight (as defined
by the current locale) as the character c.
Within ‘[’ and ‘]’, the syntax [.symbol.]
matches the collating symbol symbol.
If the extglob shell option is enabled using the shopt
builtin, several extended pattern matching operators are recognized.
In the following description, a pattern-list is a list of one
or more patterns separated by a ‘|’.
Composite patterns may be formed using one or more of the following
sub-patterns:
?(pattern-list)Matches zero or one occurrence of the given patterns.
*(pattern-list)Matches zero or more occurrences of the given patterns.
+(pattern-list)Matches one or more occurrences of the given patterns.
@(pattern-list)Matches one of the given patterns.
!(pattern-list)Matches anything except one of the given patterns.
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After the preceding expansions, all unquoted occurrences of the characters ‘\’, ‘'’, and ‘"’ that did not result from one of the above expansions are removed.
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Before a command is executed, its input and output may be redirected using a special notation interpreted by the shell. Redirection allows commands’ file handles to be duplicated, opened, closed, made to refer to different files, and can change the files the command reads from and writes to. Redirection may also be used to modify file handles in the current shell execution environment. The following redirection operators may precede or appear anywhere within a simple command or may follow a command. Redirections are processed in the order they appear, from left to right.
Each redirection that may be preceded by a file descriptor number may instead be preceded by a word of the form {varname}. In this case, for each redirection operator except >&- and <&-, the shell will allocate a file descriptor greater than 10 and assign it to {varname}. If >&- or <&- is preceded by {varname}, the value of varname defines the file descriptor to close.
In the following descriptions, if the file descriptor number is omitted, and the first character of the redirection operator is ‘<’, the redirection refers to the standard input (file descriptor 0). If the first character of the redirection operator is ‘>’, the redirection refers to the standard output (file descriptor 1).
The word following the redirection operator in the following descriptions, unless otherwise noted, is subjected to brace expansion, tilde expansion, parameter expansion, command substitution, arithmetic expansion, quote removal, filename expansion, and word splitting. If it expands to more than one word, Bash reports an error.
Note that the order of redirections is significant. For example, the command
ls > dirlist 2>&1 |
directs both standard output (file descriptor 1) and standard error (file descriptor 2) to the file dirlist, while the command
ls 2>&1 > dirlist |
directs only the standard output to file dirlist, because the standard error was made a copy of the standard output before the standard output was redirected to dirlist.
Bash handles several filenames specially when they are used in redirections, as described in the following table:
/dev/fd/fdIf fd is a valid integer, file descriptor fd is duplicated.
/dev/stdinFile descriptor 0 is duplicated.
/dev/stdoutFile descriptor 1 is duplicated.
/dev/stderrFile descriptor 2 is duplicated.
/dev/tcp/host/portIf host is a valid hostname or Internet address, and port is an integer port number or service name, Bash attempts to open the corresponding TCP socket.
/dev/udp/host/portIf host is a valid hostname or Internet address, and port is an integer port number or service name, Bash attempts to open the corresponding UDP socket.
A failure to open or create a file causes the redirection to fail.
Redirections using file descriptors greater than 9 should be used with care, as they may conflict with file descriptors the shell uses internally.
Note that the exec builtin command can make redirections take
effect in the current shell.
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Redirection of input causes the file whose name results from
the expansion of word
to be opened for reading on file descriptor n,
or the standard input (file descriptor 0) if n
is not specified.
The general format for redirecting input is:
[n]<word |
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Redirection of output causes the file whose name results from the expansion of word to be opened for writing on file descriptor n, or the standard output (file descriptor 1) if n is not specified. If the file does not exist it is created; if it does exist it is truncated to zero size.
The general format for redirecting output is:
[n]>[|]word |
If the redirection operator is ‘>’, and the noclobber
option to the set builtin has been enabled, the redirection
will fail if the file whose name results from the expansion of
word exists and is a regular file.
If the redirection operator is ‘>|’, or the redirection operator is
‘>’ and the noclobber option is not enabled, the redirection
is attempted even if the file named by word exists.
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Redirection of output in this fashion causes the file whose name results from the expansion of word to be opened for appending on file descriptor n, or the standard output (file descriptor 1) if n is not specified. If the file does not exist it is created.
The general format for appending output is:
[n]>>word |
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This construct allows both the standard output (file descriptor 1) and the standard error output (file descriptor 2) to be redirected to the file whose name is the expansion of word.
There are two formats for redirecting standard output and standard error:
&>word |
and
>&word |
Of the two forms, the first is preferred. This is semantically equivalent to
>word 2>&1 |
When using the second form, word may not expand to a number or ‘-’. If it does, other redirection operators apply (see Duplicating File Descriptors below) for compatibility reasons.
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This construct allows both the standard output (file descriptor 1) and the standard error output (file descriptor 2) to be appended to the file whose name is the expansion of word.
The format for appending standard output and standard error is:
&>>word |
This is semantically equivalent to
>>word 2>&1 |
(see Duplicating File Descriptors below).
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This type of redirection instructs the shell to read input from the current source until a line containing only word (with no trailing blanks) is seen. All of the lines read up to that point are then used as the standard input for a command.
The format of here-documents is:
<<[-]word
here-document
delimiter
|
No parameter and variable expansion, command substitution,
arithmetic expansion, or filename expansion is performed on
word. If any characters in word are quoted, the
delimiter is the result of quote removal on word,
and the lines in the here-document are not expanded.
If word is unquoted,
all lines of the here-document are subjected to
parameter expansion, command substitution, and arithmetic expansion,
the character sequence \newline is ignored, and ‘\’
must be used to quote the characters
‘\’, ‘$’, and ‘`’.
If the redirection operator is ‘<<-’, then all leading tab characters are stripped from input lines and the line containing delimiter. This allows here-documents within shell scripts to be indented in a natural fashion.
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A variant of here documents, the format is:
<<< word |
The word undergoes brace expansion, tilde expansion, parameter and variable expansion, command substitution, arithmetic expansion, and quote removal. Pathname expansion and word splitting are not performed. The result is supplied as a single string to the command on its standard input.
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The redirection operator
[n]<&word |
is used to duplicate input file descriptors. If word expands to one or more digits, the file descriptor denoted by n is made to be a copy of that file descriptor. If the digits in word do not specify a file descriptor open for input, a redirection error occurs. If word evaluates to ‘-’, file descriptor n is closed. If n is not specified, the standard input (file descriptor 0) is used.
The operator
[n]>&word |
is used similarly to duplicate output file descriptors. If n is not specified, the standard output (file descriptor 1) is used. If the digits in word do not specify a file descriptor open for output, a redirection error occurs. If word evaluates to ‘-’, file descriptor n is closed. As a special case, if n is omitted, and word does not expand to one or more digits or ‘-’, the standard output and standard error are redirected as described previously.
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The redirection operator
[n]<&digit- |
moves the file descriptor digit to file descriptor n, or the standard input (file descriptor 0) if n is not specified. digit is closed after being duplicated to n.
Similarly, the redirection operator
[n]>&digit- |
moves the file descriptor digit to file descriptor n, or the standard output (file descriptor 1) if n is not specified.
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The redirection operator
[n]<>word |
causes the file whose name is the expansion of word to be opened for both reading and writing on file descriptor n, or on file descriptor 0 if n is not specified. If the file does not exist, it is created.
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| 3.7.1 Simple Command Expansion | How Bash expands simple commands before executing them. | |
| 3.7.2 Command Search and Execution | How Bash finds commands and runs them. | |
| 3.7.3 Command Execution Environment | The environment in which Bash executes commands that are not shell builtins. | |
| 3.7.4 Environment | The environment given to a command. | |
| 3.7.5 Exit Status | The status returned by commands and how Bash interprets it. | |
| 3.7.6 Signals | What happens when Bash or a command it runs receives a signal. |
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When a simple command is executed, the shell performs the following expansions, assignments, and redirections, from left to right.
If no command name results, the variable assignments affect the current shell environment. Otherwise, the variables are added to the environment of the executed command and do not affect the current shell environment. If any of the assignments attempts to assign a value to a readonly variable, an error occurs, and the command exits with a non-zero status.
If no command name results, redirections are performed, but do not affect the current shell environment. A redirection error causes the command to exit with a non-zero status.
If there is a command name left after expansion, execution proceeds as described below. Otherwise, the command exits. If one of the expansions contained a command substitution, the exit status of the command is the exit status of the last command substitution performed. If there were no command substitutions, the command exits with a status of zero.
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After a command has been split into words, if it results in a simple command and an optional list of arguments, the following actions are taken.
$PATH for a directory containing an executable file
by that name. Bash uses a hash table to remember the full
pathnames of executable files to avoid multiple PATH searches
(see the description of hash in Bourne Shell Builtins).
A full search of the directories in $PATH
is performed only if the command is not found in the hash table.
If the search is unsuccessful, the shell searches for a defined shell
function named command_not_found_handle.
If that function exists, it is invoked with the original command and
the original command’s arguments as its arguments, and the function’s
exit status becomes the exit status of the shell.
If that function is not defined, the shell prints an error
message and returns an exit status of 127.
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The shell has an execution environment, which consists of the following:
exec builtin
cd, pushd, or
popd, or inherited by the shell at invocation
umask or inherited from
the shell’s parent
trap
set
or inherited from the shell’s parent in the environment
set
shopt (see section The Shopt Builtin)
alias (see section Aliases)
$$, and the value of
$PPID
When a simple command other than a builtin or shell function is to be executed, it is invoked in a separate execution environment that consists of the following. Unless otherwise noted, the values are inherited from the shell.
A command invoked in this separate environment cannot affect the shell’s execution environment.
Command substitution, commands grouped with parentheses, and asynchronous commands are invoked in a subshell environment that is a duplicate of the shell environment, except that traps caught by the shell are reset to the values that the shell inherited from its parent at invocation. Builtin commands that are invoked as part of a pipeline are also executed in a subshell environment. Changes made to the subshell environment cannot affect the shell’s execution environment.
Subshells spawned to execute command substitutions inherit the value of the ‘-e’ option from the parent shell. When not in POSIX mode, Bash clears the ‘-e’ option in such subshells.
If a command is followed by a ‘&’ and job control is not active, the default standard input for the command is the empty file ‘/dev/null’. Otherwise, the invoked command inherits the file descriptors of the calling shell as modified by redirections.
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When a program is invoked it is given an array of strings
called the environment.
This is a list of name-value pairs, of the form name=value.
Bash provides several ways to manipulate the environment.
On invocation, the shell scans its own environment and
creates a parameter for each name found, automatically marking
it for export
to child processes. Executed commands inherit the environment.
The export and ‘declare -x’
commands allow parameters and functions to be added to and
deleted from the environment. If the value of a parameter
in the environment is modified, the new value becomes part
of the environment, replacing the old. The environment
inherited by any executed command consists of the shell’s
initial environment, whose values may be modified in the shell,
less any pairs removed by the unset and ‘export -n’
commands, plus any additions via the export and
‘declare -x’ commands.
The environment for any simple command or function may be augmented temporarily by prefixing it with parameter assignments, as described in Shell Parameters. These assignment statements affect only the environment seen by that command.
If the ‘-k’ option is set (see section The Set Builtin), then all parameter assignments are placed in the environment for a command, not just those that precede the command name.
When Bash invokes an external command, the variable ‘$_’ is set to the full pathname of the command and passed to that command in its environment.
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The exit status of an executed command is the value returned by the waitpid system call or equivalent function. Exit statuses fall between 0 and 255, though, as explained below, the shell may use values above 125 specially. Exit statuses from shell builtins and compound commands are also limited to this range. Under certain circumstances, the shell will use special values to indicate specific failure modes.
For the shell’s purposes, a command which exits with a zero exit status has succeeded. A non-zero exit status indicates failure. This seemingly counter-intuitive scheme is used so there is one well-defined way to indicate success and a variety of ways to indicate various failure modes. When a command terminates on a fatal signal whose number is N, Bash uses the value 128+N as the exit status.
If a command is not found, the child process created to execute it returns a status of 127. If a command is found but is not executable, the return status is 126.
If a command fails because of an error during expansion or redirection, the exit status is greater than zero.
The exit status is used by the Bash conditional commands (see section Conditional Constructs) and some of the list constructs (see section Lists of Commands).
All of the Bash builtins return an exit status of zero if they succeed and a non-zero status on failure, so they may be used by the conditional and list constructs. All builtins return an exit status of 2 to indicate incorrect usage.
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When Bash is interactive, in the absence of any traps, it ignores
SIGTERM (so that ‘kill 0’ does not kill an interactive shell),
and SIGINT
is caught and handled (so that the wait builtin is interruptible).
When Bash receives a SIGINT, it breaks out of any executing loops.
In all cases, Bash ignores SIGQUIT.
If job control is in effect (see section Job Control), Bash
ignores SIGTTIN, SIGTTOU, and SIGTSTP.
Non-builtin commands started by Bash have signal handlers set to the
values inherited by the shell from its parent.
When job control is not in effect, asynchronous commands
ignore SIGINT and SIGQUIT in addition to these inherited
handlers.
Commands run as a result of
command substitution ignore the keyboard-generated job control signals
SIGTTIN, SIGTTOU, and SIGTSTP.
The shell exits by default upon receipt of a SIGHUP.
Before exiting, an interactive shell resends the SIGHUP to
all jobs, running or stopped.
Stopped jobs are sent SIGCONT to ensure that they receive
the SIGHUP.
To prevent the shell from sending the SIGHUP signal to a
particular job, it should be removed
from the jobs table with the disown
builtin (see section Job Control Builtins) or marked
to not receive SIGHUP using disown -h.
If the huponexit shell option has been set with shopt
(see section The Shopt Builtin), Bash sends a SIGHUP to all jobs when
an interactive login shell exits.
If Bash is waiting for a command to complete and receives a signal
for which a trap has been set, the trap will not be executed until
the command completes.
When Bash is waiting for an asynchronous
command via the wait builtin, the reception of a signal for
which a trap has been set will cause the wait builtin to return
immediately with an exit status greater than 128, immediately after
which the trap is executed.
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A shell script is a text file containing shell commands. When such
a file is used as the first non-option argument when invoking Bash,
and neither the ‘-c’ nor ‘-s’ option is supplied
(see section Invoking Bash),
Bash reads and executes commands from the file, then exits. This
mode of operation creates a non-interactive shell. The shell first
searches for the file in the current directory, and looks in the
directories in $PATH if not found there.
When Bash runs
a shell script, it sets the special parameter 0 to the name
of the file, rather than the name of the shell, and the positional
parameters are set to the remaining arguments, if any are given.
If no additional arguments are supplied, the positional parameters
are unset.
A shell script may be made executable by using the chmod command
to turn on the execute bit. When Bash finds such a file while
searching the $PATH for a command, it spawns a subshell to
execute it. In other words, executing
filename arguments |
is equivalent to executing
bash filename arguments |
if filename is an executable shell script.
This subshell reinitializes itself, so that the effect is as if a
new shell had been invoked to interpret the script, with the
exception that the locations of commands remembered by the parent
(see the description of hash in Bourne Shell Builtins)
are retained by the child.
Most versions of Unix make this a part of the operating system’s command
execution mechanism. If the first line of a script begins with
the two characters ‘#!’, the remainder of the line specifies
an interpreter for the program.
Thus, you can specify Bash, awk, Perl, or some other
interpreter and write the rest of the script file in that language.
The arguments to the interpreter consist of a single optional argument following the interpreter name on the first line of the script file, followed by the name of the script file, followed by the rest of the arguments. Bash will perform this action on operating systems that do not handle it themselves. Note that some older versions of Unix limit the interpreter name and argument to a maximum of 32 characters.
Bash scripts often begin with #! /bin/bash (assuming that
Bash has been installed in ‘/bin’), since this ensures that
Bash will be used to interpret the script, even if it is executed
under another shell.
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| 4.1 Bourne Shell Builtins | Builtin commands inherited from the Bourne Shell. | |
| 4.2 Bash Builtin Commands | Table of builtins specific to Bash. | |
| 4.3 Modifying Shell Behavior | Builtins to modify shell attributes and optional behavior. | |
| 4.4 Special Builtins | Builtin commands classified specially by POSIX. |
Builtin commands are contained within the shell itself. When the name of a builtin command is used as the first word of a simple command (see section Simple Commands), the shell executes the command directly, without invoking another program. Builtin commands are necessary to implement functionality impossible or inconvenient to obtain with separate utilities.
This section briefly describes the builtins which Bash inherits from the Bourne Shell, as well as the builtin commands which are unique to or have been extended in Bash.
Several builtin commands are described in other chapters: builtin commands which provide the Bash interface to the job control facilities (see section Job Control Builtins), the directory stack (see section Directory Stack Builtins), the command history (see section Bash History Builtins), and the programmable completion facilities (see section Programmable Completion Builtins).
Many of the builtins have been extended by POSIX or Bash.
Unless otherwise noted, each builtin command documented as accepting
options preceded by ‘-’ accepts ‘--’
to signify the end of the options.
The :, true, false, and test
builtins do not accept options and do not treat ‘--’ specially.
The exit, logout, break, continue, let,
and shift builtins accept and process arguments beginning
with ‘-’ without requiring ‘--’.
Other builtins that accept arguments but are not specified as accepting
options interpret arguments beginning with ‘-’ as invalid options and
require ‘--’ to prevent this interpretation.
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The following shell builtin commands are inherited from the Bourne Shell. These commands are implemented as specified by the POSIX standard.
: (a colon): [arguments] |
Do nothing beyond expanding arguments and performing redirections. The return status is zero.
. (a period). filename [arguments] |
Read and execute commands from the filename argument in the
current shell context. If filename does not contain a slash,
the PATH variable is used to find filename.
When Bash is not in POSIX mode, the current directory is searched
if filename is not found in $PATH.
If any arguments are supplied, they become the positional
parameters when filename is executed. Otherwise the positional
parameters are unchanged.
The return status is the exit status of the last command executed, or
zero if no commands are executed. If filename is not found, or
cannot be read, the return status is non-zero.
This builtin is equivalent to source.
breakbreak [n] |
Exit from a for, while, until, or select loop.
If n is supplied, the nth enclosing loop is exited.
n must be greater than or equal to 1.
The return status is zero unless n is not greater than or equal to 1.
cdcd [-L|[-P [-e]] [-@] [directory] |
Change the current working directory to directory.
If directory is not supplied, the value of the HOME
shell variable is used.
Any additional arguments following directory are ignored.
If the shell variable
CDPATH exists, it is used as a search path:
each directory name in CDPATH is searched for
directory, with alternative directory names in CDPATH
separated by a colon (‘:’).
If directory begins with a slash, CDPATH is not used.
The ‘-P’ option means to not follow symbolic links: symbolic links
are resolved while cd is traversing directory and before
processing an instance of ‘..’ in directory.
By default, or when the ‘-L’ option is supplied, symbolic links
in directory are resolved after cd processes an instance
of ‘..’ in directory.
If ‘..’ appears in directory, it is processed by removing the immediately preceding pathname component, back to a slash or the beginning of directory.
If the ‘-e’ option is supplied with ‘-P’
and the current working directory cannot be successfully determined
after a successful directory change, cd will return an unsuccessful
status.
On systems that support it, the ‘-@’ option presents the extended attributes associated with a file as a directory.
If directory is ‘-’, it is converted to $OLDPWD
before the directory change is attempted.
If a non-empty directory name from CDPATH is used, or if
‘-’ is the first argument, and the directory change is
successful, the absolute pathname of the new working directory is
written to the standard output.
The return status is zero if the directory is successfully changed, non-zero otherwise.
continuecontinue [n] |
Resume the next iteration of an enclosing for, while,
until, or select loop.
If n is supplied, the execution of the nth enclosing loop
is resumed.
n must be greater than or equal to 1.
The return status is zero unless n is not greater than or equal to 1.
evaleval [arguments] |
The arguments are concatenated together into a single command, which is
then read and executed, and its exit status returned as the exit status
of eval.
If there are no arguments or only empty arguments, the return status is
zero.
execexec [-cl] [-a name] [command [arguments]] |
If command
is supplied, it replaces the shell without creating a new process.
If the ‘-l’ option is supplied, the shell places a dash at the
beginning of the zeroth argument passed to command.
This is what the login program does.
The ‘-c’ option causes command to be executed with an empty
environment.
If ‘-a’ is supplied, the shell passes name as the zeroth
argument to command.
If command
cannot be executed for some reason, a non-interactive shell exits,
unless the execfail shell option
is enabled. In that case, it returns failure.
An interactive shell returns failure if the file cannot be executed.
If no command is specified, redirections may be used to affect
the current shell environment. If there are no redirection errors, the
return status is zero; otherwise the return status is non-zero.
exitexit [n] |
Exit the shell, returning a status of n to the shell’s parent.
If n is omitted, the exit status is that of the last command executed.
Any trap on EXIT is executed before the shell terminates.
exportexport [-fn] [-p] [name[=value]] |
Mark each name to be passed to child processes in the environment. If the ‘-f’ option is supplied, the names refer to shell functions; otherwise the names refer to shell variables. The ‘-n’ option means to no longer mark each name for export. If no names are supplied, or if the ‘-p’ option is given, a list of names of all exported variables is displayed. The ‘-p’ option displays output in a form that may be reused as input. If a variable name is followed by =value, the value of the variable is set to value.
The return status is zero unless an invalid option is supplied, one of the names is not a valid shell variable name, or ‘-f’ is supplied with a name that is not a shell function.
getoptsgetopts optstring name [args] |
getopts is used by shell scripts to parse positional parameters.
optstring contains the option characters to be recognized; if a
character is followed by a colon, the option is expected to have an
argument, which should be separated from it by whitespace.
The colon (‘:’) and question mark (‘?’) may not be
used as option characters.
Each time it is invoked, getopts
places the next option in the shell variable name, initializing
name if it does not exist,
and the index of the next argument to be processed into the
variable OPTIND.
OPTIND is initialized to 1 each time the shell or a shell script
is invoked.
When an option requires an argument,
getopts places that argument into the variable OPTARG.
The shell does not reset OPTIND automatically; it must be manually
reset between multiple calls to getopts within the same shell
invocation if a new set of parameters is to be used.
When the end of options is encountered, getopts exits with a
return value greater than zero.
OPTIND is set to the index of the first non-option argument,
and name is set to ‘?’.
getopts
normally parses the positional parameters, but if more arguments are
given in args, getopts parses those instead.
getopts can report errors in two ways. If the first character of
optstring is a colon, silent
error reporting is used. In normal operation, diagnostic messages
are printed when invalid options or missing option arguments are
encountered.
If the variable OPTERR
is set to 0, no error messages will be displayed, even if the first
character of optstring is not a colon.
If an invalid option is seen,
getopts places ‘?’ into name and, if not silent,
prints an error message and unsets OPTARG.
If getopts is silent, the option character found is placed in
OPTARG and no diagnostic message is printed.
If a required argument is not found, and getopts
is not silent, a question mark (‘?’) is placed in name,
OPTARG is unset, and a diagnostic message is printed.
If getopts is silent, then a colon (‘:’) is placed in
name and OPTARG is set to the option character found.
hashhash [-r] [-p filename] [-dt] [name] |
Each time hash is invoked, it remembers the full pathnames of the
commands specified as name arguments,
so they need not be searched for on subsequent invocations.
The commands are found by searching through the directories listed in
$PATH.
Any previously-remembered pathname is discarded.
The ‘-p’ option inhibits the path search, and filename is
used as the location of name.
The ‘-r’ option causes the shell to forget all remembered locations.
The ‘-d’ option causes the shell to forget the remembered location
of each name.
If the ‘-t’ option is supplied, the full pathname to which each
name corresponds is printed. If multiple name arguments are
supplied with ‘-t’ the name is printed before the hashed
full pathname.
The ‘-l’ option causes output to be displayed in a format
that may be reused as input.
If no arguments are given, or if only ‘-l’ is supplied,
information about remembered commands is printed.
The return status is zero unless a name is not found or an invalid
option is supplied.
pwdpwd [-LP] |
Print the absolute pathname of the current working directory. If the ‘-P’ option is supplied, the pathname printed will not contain symbolic links. If the ‘-L’ option is supplied, the pathname printed may contain symbolic links. The return status is zero unless an error is encountered while determining the name of the current directory or an invalid option is supplied.
readonlyreadonly [-aAf] [-p] [name[=value]] … |
Mark each name as readonly. The values of these names may not be changed by subsequent assignment. If the ‘-f’ option is supplied, each name refers to a shell function. The ‘-a’ option means each name refers to an indexed array variable; the ‘-A’ option means each name refers to an associative array variable. If both options are supplied, ‘-A’ takes precedence. If no name arguments are given, or if the ‘-p’ option is supplied, a list of all readonly names is printed. The other options may be used to restrict the output to a subset of the set of readonly names. The ‘-p’ option causes output to be displayed in a format that may be reused as input. If a variable name is followed by =value, the value of the variable is set to value. The return status is zero unless an invalid option is supplied, one of the name arguments is not a valid shell variable or function name, or the ‘-f’ option is supplied with a name that is not a shell function.
returnreturn [n] |
Cause a shell function to stop executing and return the value n
to its caller.
If n is not supplied, the return value is the exit status of the
last command executed in the function.
return may also be used to terminate execution of a script
being executed with the . (source) builtin,
returning either n or
the exit status of the last command executed within the script as the exit
status of the script.
If n is supplied, the return value is its least significant
8 bits.
Any command associated with the RETURN trap is executed
before execution resumes after the function or script.
The return status is non-zero if return is supplied a non-numeric
argument or is used outside a function
and not during the execution of a script by . or source.
shiftshift [n] |
Shift the positional parameters to the left by n.
The positional parameters from n+1 … $# are
renamed to $1 … $#-n.
Parameters represented by the numbers $# to $#-n+1
are unset.
n must be a non-negative number less than or equal to $#.
If n is zero or greater than $#, the positional parameters
are not changed.
If n is not supplied, it is assumed to be 1.
The return status is zero unless n is greater than $# or
less than zero, non-zero otherwise.
test[test expr |
Evaluate a conditional express
ion expr and return a status of 0
(true) or 1 (false).
Each operator and operand must be a separate argument.
Expressions are composed of the primaries described below in
Bash Conditional Expressions.
test does not accept any options, nor does it accept and ignore
an argument of ‘--’ as signifying the end of options.
When the [ form is used, the last argument to the command must
be a ].
Expressions may be combined using the following operators, listed in decreasing order of precedence. The evaluation depends on the number of arguments; see below. Operator precedence is used when there are five or more arguments.
! exprTrue if expr is false.
( expr )Returns the value of expr. This may be used to override the normal precedence of operators.
expr1 -a expr2True if both expr1 and expr2 are true.
expr1 -o expr2True if either expr1 or expr2 is true.
The test and [ builtins evaluate conditional
expressions using a set of rules based on the number of arguments.
The expression is false.
The expression is true if and only if the argument is not null.
If the first argument is ‘!’, the expression is true if and only if the second argument is null. If the first argument is one of the unary conditional operators (see section Bash Conditional Expressions), the expression is true if the unary test is true. If the first argument is not a valid unary operator, the expression is false.
The following conditions are applied in the order listed. If the second argument is one of the binary conditional operators (see section Bash Conditional Expressions), the result of the expression is the result of the binary test using the first and third arguments as operands. The ‘-a’ and ‘-o’ operators are considered binary operators when there are three arguments. If the first argument is ‘!’, the value is the negation of the two-argument test using the second and third arguments. If the first argument is exactly ‘(’ and the third argument is exactly ‘)’, the result is the one-argument test of the second argument. Otherwise, the expression is false.
If the first argument is ‘!’, the result is the negation of the three-argument expression composed of the remaining arguments. Otherwise, the expression is parsed and evaluated according to precedence using the rules listed above.
The expression is parsed and evaluated according to precedence using the rules listed above.
When used with test or ‘[’, the ‘<’ and ‘>’
operators sort lexicographically using ASCII ordering.
timestimes |
Print out the user and system times used by the shell and its children. The return status is zero.
traptrap [-lp] [arg] [sigspec …] |
The commands in arg are to be read and executed when the
shell receives signal sigspec. If arg is absent (and
there is a single sigspec) or
equal to ‘-’, each specified signal’s disposition is reset
to the value it had when the shell was started.
If arg is the null string, then the signal specified by
each sigspec is ignored by the shell and commands it invokes.
If arg is not present and ‘-p’ has been supplied,
the shell displays the trap commands associated with each sigspec.
If no arguments are supplied, or
only ‘-p’ is given, trap prints the list of commands
associated with each signal number in a form that may be reused as
shell input.
The ‘-l’ option causes the shell to print a list of signal names
and their corresponding numbers.
Each sigspec is either a signal name or a signal number.
Signal names are case insensitive and the SIG prefix is optional.
If a sigspec
is 0 or EXIT, arg is executed when the shell exits.
If a sigspec is DEBUG, the command arg is executed
before every simple command, for command, case command,
select command, every arithmetic for command, and before
the first command executes in a shell function.
Refer to the description of the extdebug option to the
shopt builtin (see section The Shopt Builtin) for details of its
effect on the DEBUG trap.
If a sigspec is RETURN, the command arg is executed
each time a shell function or a script executed with the . or
source builtins finishes executing.
If a sigspec is ERR, the command arg
is executed whenever
a pipeline (which may consist of a single simple
command), a list, or a compound command returns a
non-zero exit status,
subject to the following conditions.
The ERR trap is not executed if the failed command is part of the
command list immediately following an until or while keyword,
part of the test following the if or elif reserved words,
part of a command executed in a && or || list
except the command following the final && or ||,
any command in a pipeline but the last,
or if the command’s return
status is being inverted using !.
These are the same conditions obeyed by the errexit (‘-e’)
option.
Signals ignored upon entry to the shell cannot be trapped or reset. Trapped signals that are not being ignored are reset to their original values in a subshell or subshell environment when one is created.
The return status is zero unless a sigspec does not specify a valid signal.
umaskumask [-p] [-S] [mode] |
Set the shell process’s file creation mask to mode. If
mode begins with a digit, it is interpreted as an octal number;
if not, it is interpreted as a symbolic mode mask similar
to that accepted by the chmod command. If mode is
omitted, the current value of the mask is printed. If the ‘-S’
option is supplied without a mode argument, the mask is printed
in a symbolic format.
If the ‘-p’ option is supplied, and mode
is omitted, the output is in a form that may be reused as input.
The return status is zero if the mode is successfully changed or if
no mode argument is supplied, and non-zero otherwise.
Note that when the mode is interpreted as an octal number, each number
of the umask is subtracted from 7. Thus, a umask of 022
results in permissions of 755.
unsetunset [-fnv] [name] |
Remove each variable or function name. If the ‘-v’ option is given, each name refers to a shell variable and that variable is remvoved. If the ‘-f’ option is given, the names refer to shell functions, and the function definition is removed. If the ‘-n’ option is supplied, and name is a variable with the nameref attribute, name will be unset rather than the variable it references. ‘-n’ has no effect if the ‘-f’ option is supplied. If no options are supplied, each name refers to a variable; if there is no variable by that name, any function with that name is unset. Readonly variables and functions may not be unset. The return status is zero unless a name is readonly.
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This section describes builtin commands which are unique to or have been extended in Bash. Some of these commands are specified in the POSIX standard.
aliasalias [-p] [name[=value] …] |
Without arguments or with the ‘-p’ option, alias prints
the list of aliases on the standard output in a form that allows
them to be reused as input.
If arguments are supplied, an alias is defined for each name
whose value is given. If no value is given, the name
and value of the alias is printed.
Aliases are described in Aliases.
bindbind [-m keymap] [-lpsvPSVX] bind [-m keymap] [-q function] [-u function] [-r keyseq] bind [-m keymap] -f filename bind [-m keymap] -x keyseq:shell-command bind [-m keymap] keyseq:function-name bind readline-command |
Display current Readline (see section Command Line Editing) key and function bindings, bind a key sequence to a Readline function or macro, or set a Readline variable. Each non-option argument is a command as it would appear in a Readline initialization file (see section Readline Init File), but each binding or command must be passed as a separate argument; e.g., ‘"\C-x\C-r":re-read-init-file’.
Options, if supplied, have the following meanings:
-m keymapUse keymap as the keymap to be affected by
the subsequent bindings. Acceptable keymap
names are
emacs,
emacs-standard,
emacs-meta,
emacs-ctlx,
vi,
vi-move,
vi-command, and
vi-insert.
vi is equivalent to vi-command;
emacs is equivalent to emacs-standard.
-lList the names of all Readline functions.
-pDisplay Readline function names and bindings in such a way that they can be used as input or in a Readline initialization file.
-PList current Readline function names and bindings.
-vDisplay Readline variable names and values in such a way that they can be used as input or in a Readline initialization file.
-VList current Readline variable names and values.
-sDisplay Readline key sequences bound to macros and the strings they output in such a way that they can be used as input or in a Readline initialization file.
-SDisplay Readline key sequences bound to macros and the strings they output.
-f filenameRead key bindings from filename.
-q functionQuery about which keys invoke the named function.
-u functionUnbind all keys bound to the named function.
-r keyseqRemove any current binding for keyseq.
-x keyseq:shell-commandCause shell-command to be executed whenever keyseq is
entered.
When shell-command is executed, the shell sets the
READLINE_LINE variable to the contents of the Readline line
buffer and the READLINE_POINT variable to the current location
of the insertion point.
If the executed command changes the value of READLINE_LINE or
READLINE_POINT, those new values will be reflected in the
editing state.
-XList all key sequences bound to shell commands and the associated commands in a format that can be reused as input.
The return status is zero unless an invalid option is supplied or an error occurs.
builtinbuiltin [shell-builtin [args]] |
Run a shell builtin, passing it args, and return its exit status. This is useful when defining a shell function with the same name as a shell builtin, retaining the functionality of the builtin within the function. The return status is non-zero if shell-builtin is not a shell builtin command.
callercaller [expr] |
Returns the context of any active subroutine call (a shell function or
a script executed with the . or source builtins).
Without expr, caller displays the line number and source
filename of the current subroutine call.
If a non-negative integer is supplied as expr, caller
displays the line number, subroutine name, and source file corresponding
to that position in the current execution call stack. This extra
information may be used, for example, to print a stack trace. The
current frame is frame 0.
The return value is 0 unless the shell is not executing a subroutine call or expr does not correspond to a valid position in the call stack.
commandcommand [-pVv] command [arguments …] |
Runs command with arguments ignoring any shell function
named command.
Only shell builtin commands or commands found by searching the
PATH are executed.
If there is a shell function named ls, running ‘command ls’
within the function will execute the external command ls
instead of calling the function recursively.
The ‘-p’ option means to use a default value for PATH
that is guaranteed to find all of the standard utilities.
The return status in this case is 127 if command cannot be
found or an error occurred, and the exit status of command
otherwise.
If either the ‘-V’ or ‘-v’ option is supplied, a description of command is printed. The ‘-v’ option causes a single word indicating the command or file name used to invoke command to be displayed; the ‘-V’ option produces a more verbose description. In this case, the return status is zero if command is found, and non-zero if not.
declaredeclare [-aAfFgilnrtux] [-p] [name[=value] …] |
Declare variables and give them attributes. If no names are given, then display the values of variables instead.
The ‘-p’ option will display the attributes and values of each name. When ‘-p’ is used with name arguments, additional options, other than ‘-f’ and ‘-F’, are ignored.
When ‘-p’ is supplied without name arguments, declare
will display the attributes and values of all variables having the
attributes specified by the additional options.
If no other options are supplied with ‘-p’, declare will
display the attributes and values of all shell variables. The ‘-f’
option will restrict the display to shell functions.
The ‘-F’ option inhibits the display of function definitions;
only the function name and attributes are printed.
If the extdebug shell option is enabled using shopt
(see section The Shopt Builtin), the source file name and line number where
the function is defined are displayed as well.
‘-F’ implies ‘-f’.
The ‘-g’ option forces variables to be created or modified at
the global scope, even when declare is executed in a shell function.
It is ignored in all other cases.
The following options can be used to restrict output to variables with the specified attributes or to give variables attributes:
-aEach name is an indexed array variable (see section Arrays).
-AEach name is an associative array variable (see section Arrays).
-fUse function names only.
-iThe variable is to be treated as an integer; arithmetic evaluation (see section Shell Arithmetic) is performed when the variable is assigned a value.
-lWhen the variable is assigned a value, all upper-case characters are converted to lower-case. The upper-case attribute is disabled.
-nGive each name the nameref attribute, making it a name reference to another variable. That other variable is defined by the value of name. All references and assignments to name, except for changing the ‘-n’ attribute itself, are performed on the variable referenced by name’s value. The ‘-n’ attribute cannot be applied to array variables.
-rMake names readonly. These names cannot then be assigned values by subsequent assignment statements or unset.
-tGive each name the trace attribute.
Traced functions inherit the DEBUG and RETURN traps from
the calling shell.
The trace attribute has no special meaning for variables.
-uWhen the variable is assigned a value, all lower-case characters are converted to upper-case. The lower-case attribute is disabled.
-xMark each name for export to subsequent commands via the environment.
Using ‘+’ instead of ‘-’ turns off the attribute instead,
with the exceptions that ‘+a’
may not be used to destroy an array variable and ‘+r’ will not
remove the readonly attribute.
When used in a function, declare makes each name local,
as with the local command, unless the ‘-g’ option is used.
If a variable name is followed by =value, the value of the variable
is set to value.
When using ‘-a’ or ‘-A’ and the compound assignment syntax to create array variables, additional attributes do not take effect until subsequent assignments.
The return status is zero unless an invalid option is encountered, an attempt is made to define a function using ‘-f foo=bar’, an attempt is made to assign a value to a readonly variable, an attempt is made to assign a value to an array variable without using the compound assignment syntax (see section Arrays), one of the names is not a valid shell variable name, an attempt is made to turn off readonly status for a readonly variable, an attempt is made to turn off array status for an array variable, or an attempt is made to display a non-existent function with ‘-f’.
echoecho [-neE] [arg …] |
Output the args, separated by spaces, terminated with a
newline.
The return status is 0 unless a write error occurs.
If ‘-n’ is specified, the trailing newline is suppressed.
If the ‘-e’ option is given, interpretation of the following
backslash-escaped characters is enabled.
The ‘-E’ option disables the interpretation of these escape characters,
even on systems where they are interpreted by default.
The xpg_echo shell option may be used to
dynamically determine whether or not echo expands these
escape characters by default.
echo does not interpret ‘--’ to mean the end of options.
echo interprets the following escape sequences:
\aalert (bell)
\bbackspace
\csuppress further output
\e\Eescape
\fform feed
\nnew line
\rcarriage return
\t horizontal tab
\vvertical tab
\\backslash
\0nnnthe eight-bit character whose value is the octal value nnn (zero to three octal digits)
\xHHthe eight-bit character whose value is the hexadecimal value HH (one or two hex digits)
\uHHHHthe Unicode (ISO/IEC 10646) character whose value is the hexadecimal value HHHH (one to four hex digits)
\UHHHHHHHHthe Unicode (ISO/IEC 10646) character whose value is the hexadecimal value HHHHHHHH (one to eight hex digits)
enableenable [-a] [-dnps] [-f filename] [name …] |
Enable and disable builtin shell commands.
Disabling a builtin allows a disk command which has the same name
as a shell builtin to be executed without specifying a full pathname,
even though the shell normally searches for builtins before disk commands.
If ‘-n’ is used, the names become disabled. Otherwise
names are enabled. For example, to use the test binary
found via $PATH instead of the shell builtin version, type
‘enable -n test’.
If the ‘-p’ option is supplied, or no name arguments appear, a list of shell builtins is printed. With no other arguments, the list consists of all enabled shell builtins. The ‘-a’ option means to list each builtin with an indication of whether or not it is enabled.
The ‘-f’ option means to load the new builtin command name from shared object filename, on systems that support dynamic loading. The ‘-d’ option will delete a builtin loaded with ‘-f’.
If there are no options, a list of the shell builtins is displayed.
The ‘-s’ option restricts enable to the POSIX special
builtins. If ‘-s’ is used with ‘-f’, the new builtin becomes
a special builtin (see section Special Builtins).
The return status is zero unless a name is not a shell builtin or there is an error loading a new builtin from a shared object.
helphelp [-dms] [pattern] |
Display helpful information about builtin commands.
If pattern is specified, help gives detailed help
on all commands matching pattern, otherwise a list of
the builtins is printed.
Options, if supplied, have the following meanings:
-dDisplay a short description of each pattern
-mDisplay the description of each pattern in a manpage-like format
-sDisplay only a short usage synopsis for each pattern
The return status is zero unless no command matches pattern.
letlet expression [expression …] |
The let builtin allows arithmetic to be performed on shell
variables. Each expression is evaluated according to the
rules given below in Shell Arithmetic. If the
last expression evaluates to 0, let returns 1;
otherwise 0 is returned.
locallocal [option] name[=value] … |
For each argument, a local variable named name is created,
and assigned value.
The option can be any of the options accepted by declare.
local can only be used within a function; it makes the variable
name have a visible scope restricted to that function and its
children. The return status is zero unless local is used outside
a function, an invalid name is supplied, or name is a
readonly variable.
logoutlogout [n] |
Exit a login shell, returning a status of n to the shell’s parent.
mapfilemapfile [-n count] [-O origin] [-s count] [-t] [-u fd]
[-C callback] [-c quantum] [array]
|
Read lines from the standard input into the indexed array variable array,
or from file descriptor fd
if the ‘-u’ option is supplied.
The variable MAPFILE is the default array.
Options, if supplied, have the following meanings:
-nCopy at most count lines. If count is 0, all lines are copied.
-OBegin assigning to array at index origin. The default index is 0.
-sDiscard the first count lines read.
-tRemove a trailing newline from each line read.
-uRead lines from file descriptor fd instead of the standard input.
-CEvaluate callback each time quantumP lines are read. The ‘-c’ option specifies quantum.
-cSpecify the number of lines read between each call to callback.
If ‘-C’ is specified without ‘-c’, the default quantum is 5000. When callback is evaluated, it is supplied the index of the next array element to be assigned and the line to be assigned to that element as additional arguments. callback is evaluated after the line is read but before the array element is assigned.
If not supplied with an explicit origin, mapfile will clear array
before assigning to it.
mapfile returns successfully unless an invalid option or option
argument is supplied, array is invalid or unassignable, or array
is not an indexed array.
printfprintf [-v var] format [arguments] |
Write the formatted arguments to the standard output under the control of the format. The ‘-v’ option causes the output to be assigned to the variable var rather than being printed to the standard output.
The format is a character string which contains three types of objects:
plain characters, which are simply copied to standard output, character
escape sequences, which are converted and copied to the standard output, and
format specifications, each of which causes printing of the next successive
argument.
In addition to the standard printf(1) formats, printf
interprets the following extensions:
%bCauses printf to expand backslash escape sequences in the
corresponding argument,
except that ‘\c’ terminates output, backslashes in
‘\'’, ‘\"’, and ‘\?’ are not removed, and octal escapes
beginning with ‘\0’ may contain up to four digits.
%qCauses printf to output the
corresponding argument in a format that can be reused as shell input.
%(datefmt)TCauses printf to output the date-time string resulting from using
datefmt as a format string for strftime(3).
The corresponding argument is an integer representing the number of
seconds since the epoch.
Two special argument values may be used: -1 represents the current
time, and -2 represents the time the shell was invoked.
If no argument is specified, conversion behaves as if -1 had been given.
This is an exception to the usual printf behavior.
Arguments to non-string format specifiers are treated as C language constants, except that a leading plus or minus sign is allowed, and if the leading character is a single or double quote, the value is the ASCII value of the following character.
The format is reused as necessary to consume all of the arguments. If the format requires more arguments than are supplied, the extra format specifications behave as if a zero value or null string, as appropriate, had been supplied. The return value is zero on success, non-zero on failure.
readread [-ers] [-a aname] [-d delim] [-i text] [-n nchars]
[-N nchars] [-p prompt] [-t timeout] [-u fd] [name …]
|
One line is read from the standard input, or from the file descriptor
fd supplied as an argument to the ‘-u’ option, and the first word
is assigned to the first name, the second word to the second name,
and so on, with leftover words and their intervening separators assigned
to the last name.
If there are fewer words read from the input stream than names,
the remaining names are assigned empty values.
The characters in the value of the IFS variable
are used to split the line into words using the same rules the shell
uses for expansion (described above in Word Splitting).
The backslash character ‘\’ may be used to remove any special
meaning for the next character read and for line continuation.
If no names are supplied, the line read is assigned to the
variable REPLY.
The return code is zero, unless end-of-file is encountered, read
times out (in which case the return code is greater than 128),
a variable assignment error (such as assigning to a readonly variable) occurs,
or an invalid file descriptor is supplied as the argument to ‘-u’.
Options, if supplied, have the following meanings:
-a anameThe words are assigned to sequential indices of the array variable aname, starting at 0. All elements are removed from aname before the assignment. Other name arguments are ignored.
-d delimThe first character of delim is used to terminate the input line, rather than newline.
-eReadline (see section Command Line Editing) is used to obtain the line. Readline uses the current (or default, if line editing was not previously active) editing settings.
-i textIf Readline is being used to read the line, text is placed into the editing buffer before editing begins.
-n ncharsread returns after reading nchars characters rather than
waiting for a complete line of input, but honor a delimiter if fewer
than nchars characters are read before the delimiter.
-N ncharsread returns after reading exactly nchars characters rather
than waiting for a complete line of input, unless EOF is encountered or
read times out.
Delimiter characters encountered in the input are
not treated specially and do not cause read to return until
nchars characters are read.
-p promptDisplay prompt, without a trailing newline, before attempting to read any input. The prompt is displayed only if input is coming from a terminal.
-rIf this option is given, backslash does not act as an escape character. The backslash is considered to be part of the line. In particular, a backslash-newline pair may not be used as a line continuation.
-sSilent mode. If input is coming from a terminal, characters are not echoed.
-t timeoutCause read to time out and return failure if a complete line of
input (or a specified number of characters)
is not read within timeout seconds.
timeout may be a decimal number with a fractional portion following
the decimal point.
This option is only effective if read is reading input from a
terminal, pipe, or other special file; it has no effect when reading
from regular files.
If read times out, read saves any partial input read into
the specified variable name.
If timeout is 0, read returns immediately, without trying to
read and data. The exit status is 0 if input is available on
the specified file descriptor, non-zero otherwise.
The exit status is greater than 128 if the timeout is exceeded.
-u fdRead input from file descriptor fd.
readarrayreadarray [-n count] [-O origin] [-s count] [-t] [-u fd]
[-C callback] [-c quantum] [array]
|
Read lines from the standard input into the indexed array variable array, or from file descriptor fd if the ‘-u’ option is supplied.
A synonym for mapfile.
sourcesource filename |
A synonym for . (see section Bourne Shell Builtins).
typetype [-afptP] [name …] |
For each name, indicate how it would be interpreted if used as a command name.
If the ‘-t’ option is used, type prints a single word
which is one of ‘alias’, ‘function’, ‘builtin’,
‘file’ or ‘keyword’,
if name is an alias, shell function, shell builtin,
disk file, or shell reserved word, respectively.
If the name is not found, then nothing is printed, and
type returns a failure status.
If the ‘-p’ option is used, type either returns the name
of the disk file that would be executed, or nothing if ‘-t’
would not return ‘file’.
The ‘-P’ option forces a path search for each name, even if ‘-t’ would not return ‘file’.
If a command is hashed, ‘-p’ and ‘-P’ print the hashed value,
which is not necessarily the file that appears first in $PATH.
If the ‘-a’ option is used, type returns all of the places
that contain an executable named file.
This includes aliases and functions, if and only if the ‘-p’ option
is not also used.
If the ‘-f’ option is used, type does not attempt to find
shell functions, as with the command builtin.
The return status is zero if all of the names are found, non-zero if any are not found.
typesettypeset [-afFgrxilnrtux] [-p] [name[=value] …] |
The typeset command is supplied for compatibility with the Korn
shell.
It is a synonym for the declare builtin command.
ulimitulimit [-abcdefilmnpqrstuvxHST] [limit] |
ulimit provides control over the resources available to processes
started by the shell, on systems that allow such control. If an
option is given, it is interpreted as follows:
-SChange and report the soft limit associated with a resource.
-HChange and report the hard limit associated with a resource.
-aAll current limits are reported.
-bThe maximum socket buffer size.
-cThe maximum size of core files created.
-dThe maximum size of a process’s data segment.
-eThe maximum scheduling priority ("nice").
-fThe maximum size of files written by the shell and its children.
-iThe maximum number of pending signals.
-lThe maximum size that may be locked into memory.
-mThe maximum resident set size (many systems do not honor this limit).
-nThe maximum number of open file descriptors (most systems do not allow this value to be set).
-pThe pipe buffer size.
-qThe maximum number of bytes in POSIX message queues.
-rThe maximum real-time scheduling priority.
-sThe maximum stack size.
-tThe maximum amount of cpu time in seconds.
-uThe maximum number of processes available to a single user.
-vThe maximum amount of virtual memory available to the shell, and, on some systems, to its children.
-xThe maximum number of file locks.
-TThe maximum number of threads.
If limit is given, and the ‘-a’ option is not used,
limit is the new value of the specified resource.
The special limit values hard, soft, and
unlimited stand for the current hard limit, the current soft limit,
and no limit, respectively.
A hard limit cannot be increased by a non-root user once it is set;
a soft limit may be increased up to the value of the hard limit.
Otherwise, the current value of the soft limit for the specified resource
is printed, unless the ‘-H’ option is supplied.
When setting new limits, if neither ‘-H’ nor ‘-S’ is supplied,
both the hard and soft limits are set.
If no option is given, then ‘-f’ is assumed. Values are in 1024-byte
increments, except for ‘-t’, which is in seconds; ‘-p’,
which is in units of 512-byte blocks; and ‘-T’, ‘-b’,
‘-n’ and ‘-u’, which are unscaled values.
The return status is zero unless an invalid option or argument is supplied, or an error occurs while setting a new limit.
unaliasunalias [-a] [name … ] |
Remove each name from the list of aliases. If ‘-a’ is supplied, all aliases are removed. Aliases are described in Aliases.
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| 4.3.1 The Set Builtin | Change the values of shell attributes and positional parameters. | |
| 4.3.2 The Shopt Builtin | Modify shell optional behavior. |
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This builtin is so complicated that it deserves its own section. set
allows you to change the values of shell options and set the positional
parameters, or to display the names and values of shell variables.
setset [--abefhkmnptuvxBCEHPT] [-o option-name] [argument …] set [+abefhkmnptuvxBCEHPT] [+o option-name] [argument …] |
If no options or arguments are supplied, set displays the names
and values of all shell variables and functions, sorted according to the
current locale, in a format that may be reused as input
for setting or resetting the currently-set variables.
Read-only variables cannot be reset.
In POSIX mode, only shell variables are listed.
When options are supplied, they set or unset shell attributes. Options, if specified, have the following meanings:
-aMark variables and function which are modified or created for export to the environment of subsequent commands.
-bCause the status of terminated background jobs to be reported immediately, rather than before printing the next primary prompt.
-eExit immediately if
a pipeline (see section Pipelines), which may consist of a single simple command
(see section Simple Commands),
a list (see section Lists of Commands),
or a compound command (see section Compound Commands)
returns a non-zero status.
The shell does not exit if the command that fails is part of the
command list immediately following a while or until keyword,
part of the test in an if statement,
part of any command executed in a && or || list except
the command following the final && or ||,
any command in a pipeline but the last,
or if the command’s return status is being inverted with !.
If a compound command other than a subshell
returns a non-zero status because a command failed
while ‘-e’ was being ignored, the shell does not exit.
A trap on ERR, if set, is executed before the shell exits.
This option applies to the shell environment and each subshell environment separately (see section Command Execution Environment), and may cause subshells to exit before executing all the commands in the subshell.
If a compound command or shell function executes in a context where ‘-e’ is being ignored, none of the commands executed within the compound command or function body will be affected by the ‘-e’ setting, even if ‘-e’ is set and a command returns a failure status. If a compound command or shell function sets ‘-e’ while executing in a context where ‘-e’ is ignored, that setting will not have any effect until the compound command or the command containing the function call completes.
-fDisable filename expansion (globbing).
-hLocate and remember (hash) commands as they are looked up for execution. This option is enabled by default.
-kAll arguments in the form of assignment statements are placed in the environment for a command, not just those that precede the command name.
-mJob control is enabled (see section Job Control). All processes run in a separate process group. When a background job completes, the shell prints a line containing its exit status.
-nRead commands but do not execute them; this may be used to check a script for syntax errors. This option is ignored by interactive shells.
-o option-nameSet the option corresponding to option-name:
allexportSame as -a.
braceexpandSame as -B.
emacsUse an emacs-style line editing interface (see section Command Line Editing).
This also affects the editing interface used for read -e.
errexitSame as -e.
errtraceSame as -E.
functraceSame as -T.
hashallSame as -h.
histexpandSame as -H.
historyEnable command history, as described in Bash History Facilities. This option is on by default in interactive shells.
ignoreeofAn interactive shell will not exit upon reading EOF.
keywordSame as -k.
monitorSame as -m.
noclobberSame as -C.
noexecSame as -n.
noglobSame as -f.
nologCurrently ignored.
notifySame as -b.
nounsetSame as -u.
onecmdSame as -t.
physicalSame as -P.
pipefailIf set, the return value of a pipeline is the value of the last (rightmost) command to exit with a non-zero status, or zero if all commands in the pipeline exit successfully. This option is disabled by default.
posixChange the behavior of Bash where the default operation differs from the POSIX standard to match the standard (see section Bash POSIX Mode). This is intended to make Bash behave as a strict superset of that standard.
privilegedSame as -p.
verboseSame as -v.
viUse a vi-style line editing interface.
This also affects the editing interface used for read -e.
xtraceSame as -x.
-pTurn on privileged mode.
In this mode, the $BASH_ENV and $ENV files are not
processed, shell functions are not inherited from the environment,
and the SHELLOPTS, BASHOPTS, CDPATH and GLOBIGNORE
variables, if they appear in the environment, are ignored.
If the shell is started with the effective user (group) id not equal to the
real user (group) id, and the ‘-p’ option is not supplied, these actions
are taken and the effective user id is set to the real user id.
If the ‘-p’ option is supplied at startup, the effective user id is
not reset.
Turning this option off causes the effective user
and group ids to be set to the real user and group ids.
-tExit after reading and executing one command.
-uTreat unset variables and parameters other than the special parameters ‘@’ or ‘*’ as an error when performing parameter expansion. An error message will be written to the standard error, and a non-interactive shell will exit.
-vPrint shell input lines as they are read.
-xPrint a trace of simple commands, for commands, case
commands, select commands, and arithmetic for commands
and their arguments or associated word lists after they are
expanded and before they are executed. The value of the PS4
variable is expanded and the resultant value is printed before
the command and its expanded arguments.
-BThe shell will perform brace expansion (see section Brace Expansion). This option is on by default.
-CPrevent output redirection using ‘>’, ‘>&’, and ‘<>’ from overwriting existing files.
-EIf set, any trap on ERR is inherited by shell functions, command
substitutions, and commands executed in a subshell environment.
The ERR trap is normally not inherited in such cases.
-HEnable ‘!’ style history substitution (see section History Expansion). This option is on by default for interactive shells.
-PIf set, do not resolve symbolic links when performing commands such as
cd which change the current directory. The physical directory
is used instead. By default, Bash follows
the logical chain of directories when performing commands
which change the current directory.
For example, if ‘/usr/sys’ is a symbolic link to ‘/usr/local/sys’ then:
$ cd /usr/sys; echo $PWD /usr/sys $ cd ..; pwd /usr |
If set -P is on, then:
$ cd /usr/sys; echo $PWD /usr/local/sys $ cd ..; pwd /usr/local |
-TIf set, any trap on DEBUG and RETURN are inherited by
shell functions, command substitutions, and commands executed
in a subshell environment.
The DEBUG and RETURN traps are normally not inherited
in such cases.
--If no arguments follow this option, then the positional parameters are unset. Otherwise, the positional parameters are set to the arguments, even if some of them begin with a ‘-’.
-Signal the end of options, cause all remaining arguments to be assigned to the positional parameters. The ‘-x’ and ‘-v’ options are turned off. If there are no arguments, the positional parameters remain unchanged.
Using ‘+’ rather than ‘-’ causes these options to be
turned off. The options can also be used upon invocation of the
shell. The current set of options may be found in $-.
The remaining N arguments are positional parameters and are
assigned, in order, to $1, $2, … $N.
The special parameter # is set to N.
The return status is always zero unless an invalid option is supplied.
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This builtin allows you to change additional shell optional behavior.
shoptshopt [-pqsu] [-o] [optname …] |
Toggle the values of settings controlling optional shell behavior.
The settings can be either those listed below, or, if the
‘-o’ option is used, those available with the ‘-o’
option to the set builtin command (see section The Set Builtin).
With no options, or with the ‘-p’ option, a list of all settable
options is displayed, with an indication of whether or not each is set.
The ‘-p’ option causes output to be displayed in a form that
may be reused as input.
Other options have the following meanings:
-sEnable (set) each optname.
-uDisable (unset) each optname.
-qSuppresses normal output; the return status indicates whether the optname is set or unset. If multiple optname arguments are given with ‘-q’, the return status is zero if all optnames are enabled; non-zero otherwise.
-oRestricts the values of
optname to be those defined for the ‘-o’ option to the
set builtin (see section The Set Builtin).
If either ‘-s’ or ‘-u’
is used with no optname arguments, shopt shows only
those options which are set or unset, respectively.
Unless otherwise noted, the shopt options are disabled (off)
by default.
The return status when listing options is zero if all optnames are enabled, non-zero otherwise. When setting or unsetting options, the return status is zero unless an optname is not a valid shell option.
The list of shopt options is:
autocdIf set, a command name that is the name of a directory is executed as if
it were the argument to the cd command.
This option is only used by interactive shells.
cdable_varsIf this is set, an argument to the cd builtin command that
is not a directory is assumed to be the name of a variable whose
value is the directory to change to.
cdspellIf set, minor errors in the spelling of a directory component in a
cd command will be corrected.
The errors checked for are transposed characters,
a missing character, and a character too many.
If a correction is found, the corrected path is printed,
and the command proceeds.
This option is only used by interactive shells.
checkhashIf this is set, Bash checks that a command found in the hash table exists before trying to execute it. If a hashed command no longer exists, a normal path search is performed.
checkjobsIf set, Bash lists the status of any stopped and running jobs before exiting an interactive shell. If any jobs are running, this causes the exit to be deferred until a second exit is attempted without an intervening command (see section Job Control). The shell always postpones exiting if any jobs are stopped.
checkwinsizeIf set, Bash checks the window size after each command
and, if necessary, updates the values of
LINES and COLUMNS.
cmdhistIf set, Bash attempts to save all lines of a multiple-line command in the same history entry. This allows easy re-editing of multi-line commands.
compat31If set, Bash
changes its behavior to that of version 3.1 with respect to quoted
arguments to the conditional command’s ‘=~’ operator
and with respect to locale-specific
string comparison when using the [[
conditional command’s ‘<’ and ‘>’ operators.
Bash versions prior to bash-4.1 use ASCII collation and strcmp(3);
bash-4.1 and later use the current locale’s collation sequence and strcoll(3).
compat32If set, Bash
changes its behavior to that of version 3.2 with respect to locale-specific
string comparison when using the [[
conditional command’s ‘<’ and ‘>’ operators (see previous item).
compat40If set, Bash
changes its behavior to that of version 4.0 with respect to locale-specific
string comparison when using the [[
conditional command’s ‘<’ and ‘>’ operators (see description
of compat31)
and the effect of interrupting a command list.
Bash versions 4.0 and later interrupt the list as if the shell received the
interrupt; previous versions continue with the next command in the list.
compat41If set, Bash, when in POSIX mode, treats a single quote in a double-quoted parameter expansion as a special character. The single quotes must match (an even number) and the characters between the single quotes are considered quoted. This is the behavior of POSIX mode through version 4.1. The default Bash behavior remains as in previous versions.
compat42If set, Bash does not process the replacement string in the pattern substitution word expansion using quote removal.
complete_fullquoteIf set, Bash quotes all shell metacharacters in filenames and directory names when performing completion. If not set, Bash removes metacharacters such as the dollar sign from the set of characters that will be quoted in completed filenames when these metacharacters appear in shell variable references in words to be completed. This means that dollar signs in variable names that expand to directories will not be quoted; however, any dollar signs appearing in filenames will not be quoted, either. This is active only when bash is using backslashes to quote completed filenames. This variable is set by default, which is the default Bash behavior in versions through 4.2.
direxpandIf set, Bash replaces directory names with the results of word expansion when performing filename completion. This changes the contents of the readline editing buffer. If not set, Bash attempts to preserve what the user typed.
dirspellIf set, Bash attempts spelling correction on directory names during word completion if the directory name initially supplied does not exist.
dotglobIf set, Bash includes filenames beginning with a ‘.’ in the results of filename expansion.
execfailIf this is set, a non-interactive shell will not exit if
it cannot execute the file specified as an argument to the exec
builtin command. An interactive shell does not exit if exec
fails.
expand_aliasesIf set, aliases are expanded as described below under Aliases, Aliases. This option is enabled by default for interactive shells.
extdebugIf set, behavior intended for use by debuggers is enabled:
declare builtin (see section Bash Builtin Commands)
displays the source file name and line number corresponding to each function
name supplied as an argument.
DEBUG trap returns a non-zero value, the
next command is skipped and not executed.
DEBUG trap returns a value of 2, and the
shell is executing in a subroutine (a shell function or a shell script
executed by the . or source builtins), a call to
return is simulated.
BASH_ARGC and BASH_ARGV are updated as described in their
descriptions (see section Bash Variables).
( command ) inherit the
DEBUG and RETURN traps.
( command ) inherit the
ERR trap.
extglobIf set, the extended pattern matching features described above (see section Pattern Matching) are enabled.
extquoteIf set, $'string' and $"string" quoting is
performed within ${parameter} expansions
enclosed in double quotes. This option is enabled by default.
failglobIf set, patterns which fail to match filenames during filename expansion result in an expansion error.
force_fignoreIf set, the suffixes specified by the FIGNORE shell variable
cause words to be ignored when performing word completion even if
the ignored words are the only possible completions.
See section Bash Variables, for a description of FIGNORE.
This option is enabled by default.
globasciirangesIf set, range expressions used in pattern matching bracket expressions (see section Pattern Matching) behave as if in the traditional C locale when performing comparisons. That is, the current locale’s collating sequence is not taken into account, so ‘b’ will not collate between ‘A’ and ‘B’, and upper-case and lower-case ASCII characters will collate together.
globstarIf set, the pattern ‘**’ used in a filename expansion context will match all files and zero or more directories and subdirectories. If the pattern is followed by a ‘/’, only directories and subdirectories match.
gnu_errfmtIf set, shell error messages are written in the standard GNU error message format.
histappendIf set, the history list is appended to the file named by the value
of the HISTFILE
variable when the shell exits, rather than overwriting the file.
histreeditIf set, and Readline is being used, a user is given the opportunity to re-edit a failed history substitution.
histverifyIf set, and Readline is being used, the results of history substitution are not immediately passed to the shell parser. Instead, the resulting line is loaded into the Readline editing buffer, allowing further modification.
hostcompleteIf set, and Readline is being used, Bash will attempt to perform hostname completion when a word containing a ‘@’ is being completed (see section Letting Readline Type For You). This option is enabled by default.
huponexitIf set, Bash will send SIGHUP to all jobs when an interactive
login shell exits (see section Signals).
interactive_commentsAllow a word beginning with ‘#’ to cause that word and all remaining characters on that line to be ignored in an interactive shell. This option is enabled by default.
lastpipeIf set, and job control is not active, the shell runs the last command of a pipeline not executed in the background in the current shell environment.
lithistIf enabled, and the cmdhist
option is enabled, multi-line commands are saved to the history with
embedded newlines rather than using semicolon separators where possible.
login_shellThe shell sets this option if it is started as a login shell (see section Invoking Bash). The value may not be changed.
mailwarnIf set, and a file that Bash is checking for mail has been
accessed since the last time it was checked, the message
"The mail in mailfile has been read" is displayed.
no_empty_cmd_completionIf set, and Readline is being used, Bash will not attempt to search
the PATH for possible completions when completion is attempted
on an empty line.
nocaseglobIf set, Bash matches filenames in a case-insensitive fashion when performing filename expansion.
nocasematchIf set, Bash matches patterns in a case-insensitive fashion when
performing matching while executing case or [[
conditional commands.
nullglobIf set, Bash allows filename patterns which match no files to expand to a null string, rather than themselves.
progcompIf set, the programmable completion facilities (see section Programmable Completion) are enabled. This option is enabled by default.
promptvarsIf set, prompt strings undergo parameter expansion, command substitution, arithmetic expansion, and quote removal after being expanded as described below (see section Controlling the Prompt). This option is enabled by default.
restricted_shellThe shell sets this option if it is started in restricted mode (see section The Restricted Shell). The value may not be changed. This is not reset when the startup files are executed, allowing the startup files to discover whether or not a shell is restricted.
shift_verboseIf this is set, the shift
builtin prints an error message when the shift count exceeds the
number of positional parameters.
sourcepathIf set, the source builtin uses the value of PATH
to find the directory containing the file supplied as an argument.
This option is enabled by default.
xpg_echoIf set, the echo builtin expands backslash-escape sequences
by default.
The return status when listing options is zero if all optnames are enabled, non-zero otherwise. When setting or unsetting options, the return status is zero unless an optname is not a valid shell option.
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For historical reasons, the POSIX standard has classified several builtin commands as special. When Bash is executing in POSIX mode, the special builtins differ from other builtin commands in three respects:
When Bash is not executing in POSIX mode, these builtins behave no differently than the rest of the Bash builtin commands. The Bash POSIX mode is described in Bash POSIX Mode.
These are the POSIX special builtins:
break : . continue eval exec exit export readonly return set shift trap unset |
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| 5.1 Bourne Shell Variables | Variables which Bash uses in the same way as the Bourne Shell. | |
| 5.2 Bash Variables | List of variables that exist in Bash. |
This chapter describes the shell variables that Bash uses. Bash automatically assigns default values to a number of variables.
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Bash uses certain shell variables in the same way as the Bourne shell. In some cases, Bash assigns a default value to the variable.
CDPATH
A colon-separated list of directories used as a search path for
the cd builtin command.
HOME
The current user’s home directory; the default for the cd builtin
command.
The value of this variable is also used by tilde expansion
(see section Tilde Expansion).
IFS
A list of characters that separate fields; used when the shell splits words as part of expansion.
MAIL
If this parameter is set to a filename or directory name
and the MAILPATH variable
is not set, Bash informs the user of the arrival of mail in
the specified file or Maildir-format directory.
MAILPATH
A colon-separated list of filenames which the shell periodically checks
for new mail.
Each list entry can specify the message that is printed when new mail
arrives in the mail file by separating the filename from the message with
a ‘?’.
When used in the text of the message, $_ expands to the name of
the current mail file.
OPTARG
The value of the last option argument processed by the getopts builtin.
OPTIND
The index of the last option argument processed by the getopts builtin.
PATH
A colon-separated list of directories in which the shell looks for
commands.
A zero-length (null) directory name in the value of PATH indicates the
current directory.
A null directory name may appear as two adjacent colons, or as an initial
or trailing colon.
PS1
The primary prompt string. The default value is ‘\s-\v\$ ’.
See section Controlling the Prompt, for the complete list of escape
sequences that are expanded before PS1 is displayed.
PS2
The secondary prompt string. The default value is ‘> ’.
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These variables are set or used by Bash, but other shells do not normally treat them specially.
A few variables used by Bash are described in different chapters: variables for controlling the job control facilities (see section Job Control Variables).
BASH
The full pathname used to execute the current instance of Bash.
BASHOPTS
A colon-separated list of enabled shell options. Each word in
the list is a valid argument for the ‘-s’ option to the
shopt builtin command (see section The Shopt Builtin).
The options appearing in BASHOPTS are those reported
as ‘on’ by ‘shopt’.
If this variable is in the environment when Bash
starts up, each shell option in the list will be enabled before
reading any startup files. This variable is readonly.
BASHPID
Expands to the process ID of the current Bash process.
This differs from $$ under certain circumstances, such as subshells
that do not require Bash to be re-initialized.
BASH_ALIASES
An associative array variable whose members correspond to the internal
list of aliases as maintained by the alias builtin.
(see section Bourne Shell Builtins).
Elements added to this array appear in the alias list; unsetting array
elements cause aliases to be removed from the alias list.
BASH_ARGC
An array variable whose values are the number of parameters in each
frame of the current bash execution call stack. The number of
parameters to the current subroutine (shell function or script executed
with . or source) is at the top of the stack. When a
subroutine is executed, the number of parameters passed is pushed onto
BASH_ARGC.
The shell sets BASH_ARGC only when in extended debugging mode
(see The Shopt Builtin
for a description of the extdebug option to the shopt
builtin).
BASH_ARGV
An array variable containing all of the parameters in the current bash
execution call stack. The final parameter of the last subroutine call
is at the top of the stack; the first parameter of the initial call is
at the bottom. When a subroutine is executed, the parameters supplied
are pushed onto BASH_ARGV.
The shell sets BASH_ARGV only when in extended debugging mode
(see The Shopt Builtin
for a description of the extdebug option to the shopt
builtin).
BASH_CMDS
An associative array variable whose members correspond to the internal
hash table of commands as maintained by the hash builtin
(see section Bourne Shell Builtins).
Elements added to this array appear in the hash table; unsetting array
elements cause commands to be removed from the hash table.
BASH_COMMAND
The command currently being executed or about to be executed, unless the shell is executing a command as the result of a trap, in which case it is the command executing at the time of the trap.
BASH_COMPAT
The value is used to set the shell’s compatibility level.
See section The Shopt Builtin, for a description of the various compatibility
levels and their effects.
The value may be a decimal number (e.g., 4.2) or an integer (e.g., 42)
corresponding to the desired compatibility level.
If BASH_COMPAT is unset or set to the empty string, the compatibility
level is set to the default for the current version.
If BASH_COMPAT is set to a value that is not one of the valid
compatibility levels, the shell prints an error message and sets the
compatibility level to the default for the current version.
The valid compatibility levels correspond to the compatibility options
accepted by the shopt builtin described above (for example,
compat42 means that 4.2 and 42 are valid values).
The current version is also a valid value.
BASH_ENV
If this variable is set when Bash is invoked to execute a shell script, its value is expanded and used as the name of a startup file to read before executing the script. See section Bash Startup Files.
BASH_EXECUTION_STRING
The command argument to the ‘-c’ invocation option.
BASH_LINENO
An array variable whose members are the line numbers in source files
where each corresponding member of FUNCNAME was invoked.
${BASH_LINENO[$i]} is the line number in the source file
(${BASH_SOURCE[$i+1]}) where
${FUNCNAME[$i]} was called (or ${BASH_LINENO[$i-1]} if
referenced within another shell function).
Use LINENO to obtain the current line number.
BASH_REMATCH
An array variable whose members are assigned by the ‘=~’ binary
operator to the [[ conditional command
(see section Conditional Constructs).
The element with index 0 is the portion of the string
matching the entire regular expression.
The element with index n is the portion of the
string matching the nth parenthesized subexpression.
This variable is read-only.
BASH_SOURCE
An array variable whose members are the source filenames where the
corresponding shell function names in the FUNCNAME array
variable are defined.
The shell function ${FUNCNAME[$i]} is defined in the file
${BASH_SOURCE[$i]} and called from ${BASH_SOURCE[$i+1]}
BASH_SUBSHELL
Incremented by one within each subshell or subshell environment when the shell begins executing in that environment. The initial value is 0.
BASH_VERSINFO
A readonly array variable (see section Arrays) whose members hold version information for this instance of Bash. The values assigned to the array members are as follows:
BASH_VERSINFO[0]The major version number (the release).
BASH_VERSINFO[1]The minor version number (the version).
BASH_VERSINFO[2]The patch level.
BASH_VERSINFO[3]The build version.
BASH_VERSINFO[4]The release status (e.g., beta1).
BASH_VERSINFO[5]The value of MACHTYPE.
BASH_VERSION
The version number of the current instance of Bash.
BASH_XTRACEFD
If set to an integer corresponding to a valid file descriptor, Bash
will write the trace output generated when ‘set -x’
is enabled to that file descriptor.
This allows tracing output to be separated from diagnostic and error
messages.
The file descriptor is closed when BASH_XTRACEFD is unset or assigned
a new value.
Unsetting BASH_XTRACEFD or assigning it the empty string causes the
trace output to be sent to the standard error.
Note that setting BASH_XTRACEFD to 2 (the standard error file
descriptor) and then unsetting it will result in the standard error
being closed.
CHILD_MAX
Set the number of exited child status values for the shell to remember. Bash will not allow this value to be decreased below a POSIX-mandated minimum, and there is a maximum value (currently 8192) that this may not exceed. The minimum value is system-dependent.
COLUMNS
Used by the select command to determine the terminal width
when printing selection lists.
Automatically set if the checkwinsize option is enabled
(see section The Shopt Builtin), or in an interactive shell upon receipt of a
SIGWINCH.
COMP_CWORD
An index into ${COMP_WORDS} of the word containing the current
cursor position.
This variable is available only in shell functions invoked by the
programmable completion facilities (see section Programmable Completion).
COMP_LINE
The current command line. This variable is available only in shell functions and external commands invoked by the programmable completion facilities (see section Programmable Completion).
COMP_POINT
The index of the current cursor position relative to the beginning of
the current command.
If the current cursor position is at the end of the current command,
the value of this variable is equal to ${#COMP_LINE}.
This variable is available only in shell functions and external
commands invoked by the
programmable completion facilities (see section Programmable Completion).
COMP_TYPE
Set to an integer value corresponding to the type of completion attempted that caused a completion function to be called: TAB, for normal completion, ‘?’, for listing completions after successive tabs, ‘!’, for listing alternatives on partial word completion, ‘@’, to list completions if the word is not unmodified, or ‘%’, for menu completion. This variable is available only in shell functions and external commands invoked by the programmable completion facilities (see section Programmable Completion).
COMP_KEY
The key (or final key of a key sequence) used to invoke the current completion function.
COMP_WORDBREAKS
The set of characters that the Readline library treats as word
separators when performing word completion.
If COMP_WORDBREAKS is unset, it loses its special properties,
even if it is subsequently reset.
COMP_WORDS
An array variable consisting of the individual
words in the current command line.
The line is split into words as Readline would split it, using
COMP_WORDBREAKS as described above.
This variable is available only in shell functions invoked by the
programmable completion facilities (see section Programmable Completion).
COMPREPLY
An array variable from which Bash reads the possible completions generated by a shell function invoked by the programmable completion facility (see section Programmable Completion). Each array element contains one possible completion.
COPROC
An array variable created to hold the file descriptors for output from and input to an unnamed coprocess (see section Coprocesses).
DIRSTACK
An array variable containing the current contents of the directory stack.
Directories appear in the stack in the order they are displayed by the
dirs builtin.
Assigning to members of this array variable may be used to modify
directories already in the stack, but the pushd and popd
builtins must be used to add and remove directories.
Assignment to this variable will not change the current directory.
If DIRSTACK is unset, it loses its special properties, even if
it is subsequently reset.
EMACS
If Bash finds this variable in the environment when the shell starts with value ‘t’, it assumes that the shell is running in an Emacs shell buffer and disables line editing.
ENV
Similar to BASH_ENV; used when the shell is invoked in
POSIX Mode (see section Bash POSIX Mode).
EUID
The numeric effective user id of the current user. This variable is readonly.
FCEDIT
The editor used as a default by the ‘-e’ option to the fc
builtin command.
FIGNORE
A colon-separated list of suffixes to ignore when performing
filename completion.
A filename whose suffix matches one of the entries in
FIGNORE
is excluded from the list of matched filenames. A sample
value is ‘.o:~’
FUNCNAME
An array variable containing the names of all shell functions
currently in the execution call stack.
The element with index 0 is the name of any currently-executing
shell function.
The bottom-most element (the one with the highest index)
is "main".
This variable exists only when a shell function is executing.
Assignments to FUNCNAME have no effect and return an error status.
If FUNCNAME is unset, it loses its special properties, even if
it is subsequently reset.
This variable can be used with BASH_LINENO and BASH_SOURCE.
Each element of FUNCNAME has corresponding elements in
BASH_LINENO and BASH_SOURCE to describe the call stack.
For instance, ${FUNCNAME[$i]} was called from the file
${BASH_SOURCE[$i+1]} at line number ${BASH_LINENO[$i]}.
The caller builtin displays the current call stack using this
information.
FUNCNEST
If set to a numeric value greater than 0, defines a maximum function nesting level. Function invocations that exceed this nesting level will cause the current command to abort.
GLOBIGNORE
A colon-separated list of patterns defining the set of filenames to
be ignored by filename expansion.
If a filename matched by a filename expansion pattern also matches one
of the patterns in GLOBIGNORE, it is removed from the list
of matches.
GROUPS
An array variable containing the list of groups of which the current
user is a member.
Assignments to GROUPS have no effect and return an error status.
If GROUPS is unset, it loses its special properties, even if it is
subsequently reset.
histchars
Up to three characters which control history expansion, quick substitution, and tokenization (see section History Expansion). The first character is the history expansion character, that is, the character which signifies the start of a history expansion, normally ‘!’. The second character is the character which signifies ‘quick substitution’ when seen as the first character on a line, normally ‘^’. The optional third character is the character which indicates that the remainder of the line is a comment when found as the first character of a word, usually ‘#’. The history comment character causes history substitution to be skipped for the remaining words on the line. It does not necessarily cause the shell parser to treat the rest of the line as a comment.
HISTCMD
The history number, or index in the history list, of the current
command. If HISTCMD is unset, it loses its special properties,
even if it is subsequently reset.
HISTCONTROL
A colon-separated list of values controlling how commands are saved on
the history list.
If the list of values includes ‘ignorespace’, lines which begin
with a space character are not saved in the history list.
A value of ‘ignoredups’ causes lines which match the previous
history entry to not be saved.
A value of ‘ignoreboth’ is shorthand for
‘ignorespace’ and ‘ignoredups’.
A value of ‘erasedups’ causes all previous lines matching the
current line to be removed from the history list before that line
is saved.
Any value not in the above list is ignored.
If HISTCONTROL is unset, or does not include a valid value,
all lines read by the shell parser are saved on the history list,
subject to the value of HISTIGNORE.
The second and subsequent lines of a multi-line compound command are
not tested, and are added to the history regardless of the value of
HISTCONTROL.
HISTFILE
The name of the file to which the command history is saved. The default value is ‘~/.bash_history’.
HISTFILESIZE
The maximum number of lines contained in the history file.
When this variable is assigned a value, the history file is truncated,
if necessary, to contain no more than that number of lines
by removing the oldest entries.
The history file is also truncated to this size after
writing it when a shell exits.
If the value is 0, the history file is truncated to zero size.
Non-numeric values and numeric values less than zero inhibit truncation.
The shell sets the default value to the value of HISTSIZE
after reading any startup files.
HISTIGNORE
A colon-separated list of patterns used to decide which command
lines should be saved on the history list. Each pattern is
anchored at the beginning of the line and must match the complete
line (no implicit ‘*’ is appended). Each pattern is tested
against the line after the checks specified by HISTCONTROL
are applied. In addition to the normal shell pattern matching
characters, ‘&’ matches the previous history line. ‘&’
may be escaped using a backslash; the backslash is removed
before attempting a match.
The second and subsequent lines of a multi-line compound command are
not tested, and are added to the history regardless of the value of
HISTIGNORE.
HISTIGNORE subsumes the function of HISTCONTROL. A
pattern of ‘&’ is identical to ignoredups, and a
pattern of ‘[ ]*’ is identical to ignorespace.
Combining these two patterns, separating them with a colon,
provides the functionality of ignoreboth.
HISTSIZE
The maximum number of commands to remember on the history list. If the value is 0, commands are not saved in the history list. Numeric values less than zero result in every command being saved on the history list (there is no limit). The shell sets the default value to 500 after reading any startup files.
HISTTIMEFORMAT
If this variable is set and not null, its value is used as a format string
for strftime to print the time stamp associated with each history
entry displayed by the history builtin.
If this variable is set, time stamps are written to the history file so
they may be preserved across shell sessions.
This uses the history comment character to distinguish timestamps from
other history lines.
HOSTFILE
Contains the name of a file in the same format as ‘/etc/hosts’ that
should be read when the shell needs to complete a hostname.
The list of possible hostname completions may be changed while the shell
is running;
the next time hostname completion is attempted after the
value is changed, Bash adds the contents of the new file to the
existing list.
If HOSTFILE is set, but has no value, or does not name a readable file,
Bash attempts to read
‘/etc/hosts’ to obtain the list of possible hostname completions.
When HOSTFILE is unset, the hostname list is cleared.
HOSTNAME
The name of the current host.
HOSTTYPE
A string describing the machine Bash is running on.
IGNOREEOF
Controls the action of the shell on receipt of an EOF character
as the sole input. If set, the value denotes the number
of consecutive EOF characters that can be read as the
first character on an input line
before the shell will exit. If the variable exists but does not
have a numeric value (or has no value) then the default is 10.
If the variable does not exist, then EOF signifies the end of
input to the shell. This is only in effect for interactive shells.
INPUTRC
The name of the Readline initialization file, overriding the default of ‘~/.inputrc’.