pcre2syntax
Name
pcre2syntax - PCRE2 syntax quick reference
- PCRE2 regular expression syntax summary
- Quoting
- Braced items
- Escaped characters
- Character types
- General category properties for
\pand\P - PCRE2 special category properties for
\pand\P - Binary properties for
\pand\P - Script matching with
\pand\P - The
Bidi_Classproperty for\pand\P - Character classes
- Perl extended character classes
- Quantifiers
- Anchors and simple assertions
- Reported match point setting
- Alternation
- Capturing
- Atomic groups
- Comment
- Option setting
- Newline convention
- What
\Rmatches - Lookahead and lookbehind assertions
- Non-atomic lookaround assertions
- Substring scan assertion
- Script runs
- Backreferences
- Subroutine references (possibly recursive)
- Conditional patterns
- Backtracking control
- Callouts
- Replacement strings
- See also
PCRE2 regular expression syntax summary
The full syntax and semantics of the regular expression patterns that are
supported by PCRE2 are described in the
pcre2pattern
documentation. This document contains a quick-reference summary of the pattern
syntax followed by the syntax of replacement strings in substitution function.
The full description of the latter is in the
pcre2api
documentation.
Quoting
\xwhere x is non-alphanumeric, matches a literal x
\Q...\Etreat enclosed characters as literal
Note that white space inside \Q...\E is always treated as literal, even if
PCRE2_EXTENDED is set, causing most other white space to be ignored. Note also
that PCRE2’s handling of \Q...\E has some differences from Perl’s. See the
pcre2pattern
documentation for details.
Braced items
With one exception, wherever brace characters { and } are required to enclose
data for constructions such as \g{2} or \k{name}, space and/or horizontal tab
characters that follow { or precede } are allowed and are ignored. In the case
of quantifiers, they may also appear before or after the comma. The exception
is \u{...} which is not Perl-compatible and is recognized only when
PCRE2_EXTRA_ALT_BSUX is set. This is an ECMAScript compatibility feature, and
follows ECMAScript’s behaviour.
Escaped characters
This table applies to ASCII and Unicode environments. An unrecognized escape sequence causes an error.
\aalarm, that is, the BEL character (
0x07)\cx"control-x", where x is a non-control ASCII character
\eescape (
0x1B)\fform feed (
0x0C)\nnewline (
0x0A)\rcarriage return (
0x0D)\ttab (
0x09)\0ddcharacter with octal code 0dd
\dddcharacter with octal code ddd, or backreference
\o{ddd...}character with octal code ddd...
\N{U+hh...}character with Unicode code point hh... (Unicode mode only)
\xhhcharacter with hex code hh
\x{hh...}character with hex code hh...
\N{U+hh...} is synonymous with \x{hh...} but is not supported in environments
that use EBCDIC code (mainly IBM mainframes). Note that \N not followed by an
opening curly bracket has a different meaning (see below).
If PCRE2_ALT_BSUX or PCRE2_EXTRA_ALT_BSUX is set ("ALT_BSUX mode"), the
following are also recognized:
\Uthe character "U"
\uhhhhcharacter with hex code hhhh
\u{hh...}character with hex code hh... but only for EXTRA_ALT_BSUX
When \x is not followed by {, one or two hexadecimal digits are read,
but in ALT_BSUX mode \x must be followed by two hexadecimal digits to be
recognized as a hexadecimal escape; otherwise it matches a literal x.
Likewise, if \u (in ALT_BSUX mode) is not followed by four hexadecimal digits
or (in EXTRA_ALT_BSUX mode) a sequence of hex digits in curly brackets, it
matches a literal u.
Note that \0dd is always an octal code. The treatment of backslash followed by
a non-zero digit is complicated; for details see the section
Non-printing characters
in the
pcre2pattern
documentation, where details of escape processing in EBCDIC environments are
also given.
Character types
.any character except newline; in dotall mode, any character whatsoever
\Cone code unit, even in UTF mode (best avoided)
\da decimal digit
\Da character that is not a decimal digit
\ha horizontal white space character
\Ha character that is not a horizontal white space character
\Na character that is not a newline
\p{xx}a character with the xx property
\P{xx}a character without the xx property
\Ra newline sequence
\sa white space character
\Sa character that is not a white space character
\va vertical white space character
\Va character that is not a vertical white space character
\wa "word" character
\Wa "non-word" character
\Xa Unicode extended grapheme cluster
\C is dangerous because it may leave the current matching point in the middle
of a UTF-8 or UTF-16 character. The application can lock out the use of \C by
setting the PCRE2_NEVER_BACKSLASH_C option. It is also possible to build PCRE2
with the use of \C permanently disabled.
By default, \d, \s, and \w match only ASCII characters, even in UTF-8 mode
or in the 16-bit and 32-bit libraries. However, if locale-specific matching is
happening, \s and \w may also match characters with code points in the range
128—255. If the PCRE2_UCP option is set, the behaviour of these escape
sequences is changed to use Unicode properties and they match many more
characters, but there are some option settings that can restrict individual
sequences to matching only ASCII characters.
Property descriptions in \p and \P are matched caselessly; hyphens,
underscores, and ASCII white space characters are ignored, in accordance with
Unicode’s "loose matching" rules. For example, \p{Bidi_Class=al} is the same
as \p{ bidi class = AL }.
General category properties for \p and \P
COther
CcControl
CfFormat
CnUnassigned
CoPrivate use
CsSurrogate
LLetter
LcCased letter, the union of
Ll,Lu, andLtL&Synonym of
LcLlLower case letter
LmModifier letter
LoOther letter
LtTitle case letter
LuUpper case letter
MMark
McSpacing mark
MeEnclosing mark
MnNon-spacing mark
NNumber
NdDecimal number
NlLetter number
NoOther number
PPunctuation
PcConnector punctuation
PdDash punctuation
PeClose punctuation
PfFinal punctuation
PiInitial punctuation
PoOther punctuation
PsOpen punctuation
SSymbol
ScCurrency symbol
SkModifier symbol
SmMathematical symbol
SoOther symbol
ZSeparator
ZlLine separator
ZpParagraph separator
ZsSpace separator
From release 10.45, when caseless matching is set, Ll, Lu, and
Lt are all equivalent to Lc.
PCRE2 special category properties for \p and \P
XanAlphanumeric: union of properties
LandNXpsPOSIX space: property
Zor tab, NL, VT, FF, CRXspPerl space: property
Zor tab, NL, VT, FF, CRXucUniversally-named character: one that can be represented by a Universal Character Name
XwdPerl word: property
Xanor underscore
Perl and POSIX space are now the same. Perl added VT to its space character set at release 5.18.
Binary properties for \p and \P
Unicode defines a number of binary properties, that is, properties whose only
values are true or false. You can obtain a list of those that are recognized by
\p and \P, along with their abbreviations, by running this command:
pcre2test -LPScript matching with \p and \P
Many script names and their 4-letter abbreviations are recognized in
\p{sc:...} or \p{scx:...} items, or on their own with \p (and also \P of
course). You can obtain a list of these scripts by running this command:
pcre2test -LSThe Bidi_Class property for \p and \P
\p{Bidi_Class:class}Matches a character with the given class
\p{BC:class}Matches a character with the given class
The recognized classes are:
ALArabic letter
ANArabic number
BParagraph separator
BNBoundary neutral
CSCommon separator
ENEuropean number
ESEuropean separator
ETEuropean terminator
FSIFirst strong isolate
LLeft-to-right
LRELeft-to-right embedding
LRILeft-to-right isolate
LROLeft-to-right override
NSMNon-spacing mark
ONOther neutral
PDFPop directional format
PDIPop directional isolate
RRight-to-left
RLERight-to-left embedding
RLIRight-to-left isolate
RLORight-to-left override
SSegment separator
WSWhite space
Character classes
[...]Positive character class
[^...]Negative character class
[x-y]Range (can be used for hexadecimal characters)
[[:xxx:]]Positive POSIX named set
[[:^xxx:]]Negative POSIX named set
The recognized POSIX named sets are:
alnumAlphanumeric
alphaAlphabetic
ascii0—127
blankSpace or tab
cntrlControl character
digitDecimal digit
graphPrinting, excluding space
lowerLower case letter
printPrinting, including space
punctPrinting, excluding alphanumeric
spaceWhite space
upperUpper case letter
wordSame as
\wxdigitHexadecimal digit
In PCRE2, POSIX character set names recognize only ASCII characters by default,
but some of them use Unicode properties if PCRE2_UCP is set. You can use
\Q...\E inside a character class.
When PCRE2_ALT_EXTENDED_CLASS is set, UTS#18 extended character classes may be
used, allowing nested character classes, combined using set operators.
[x&&[^y]]UTS#18 extended character class
x||ySet union (OR)
x&&ySet intersection (AND)
x--ySet difference (AND NOT)
x~~ySet symmetric difference (XOR)
Perl extended character classes
(?[...])Perl extended character class
(?[\p{Thai} & \p{Nd}])Operators; white space ignored
(?[(X - Y) & Z])Parentheses for grouping
(?[ [^3] & \p{Nd} ])[ ... ]is a nested ordinary class(?[ [:alpha:] - [z] ])POSIX set is allowed outside
[ ... ]but character literal must be enclosed(?[ \d - [3] ])Backslash-escaped set is allowed outside
[ ... ](?[ !\n & [:ascii:] ])Backslash-escaped character is allowed outside
[ ... ]; all other characters or ranges must be enclosed in[ ... ]x|y,x+ySet union (OR)
x&ySet intersection (AND)
x-ySet difference (AND NOT)
x^ySet symmetric difference (XOR)
!xSet complement (NOT)
Inside a Perl extended character class, [...] switches mode to be interpreted
as an ordinary character class. Outside of a nested [...], the only items
permitted are backslash-escapes, POSIX sets, operators, and parentheses. Inside
a nested ordinary class, ^ has its usual meaning (inverts the class when used
as the first character); outside of a nested class, ^ is the XOR operator.
Quantifiers
?0 or 1, greedy
?+0 or 1, possessive
??0 or 1, lazy
*0 or more, greedy
*+0 or more, possessive
*?0 or more, lazy
+1 or more, greedy
++1 or more, possessive
+?1 or more, lazy
{n}Exactly n
{n,m}At least n, no more than m, greedy
{n,m}+At least n, no more than m, possessive
{n,m}?At least n, no more than m, lazy
{n,}n or more, greedy
{n,}+n or more, possessive
{n,}?n or more, lazy
{,m}Zero up to m, greedy
{,m}+Zero up to m, possessive
{,m}?Zero up to m, lazy
Anchors and simple assertions
\bWord boundary
\BNot a word boundary
^Start of subject; also after an internal newline in multiline mode (after any newline if
PCRE2_ALT_CIRCUMFLEXis set)\AStart of subject
$End of subject; also before newline at end of subject and before an internal newline in multiline mode
\ZEnd of subject; also before newline at end of subject
\zEnd of subject
\GFirst matching position in subject
Reported match point setting
\KSet reported start of match
From release 10.38, \K is not permitted by default in lookaround assertions,
for compatibility with Perl. However, if the PCRE2_EXTRA_ALLOW_LOOKAROUND_BSK
option is set, the previous behaviour is re-enabled. When this option is set,
\K is honoured in positive assertions, but ignored in negative ones.
Alternation
expr|expr|expr...Alternative expressions
Capturing
(...)Capture group
(?<name>...)Named capture group (Perl)
(?'name'...)Named capture group (Perl)
(?P<name>...)Named capture group (Python)
(?:...)Non-capture group
(?|...)Non-capture group; reset group numbers for capture groups in each alternative
In non-UTF modes, names may contain underscores and ASCII letters and digits; in UTF modes, any Unicode letters and Unicode decimal digits are permitted. In both cases, a name must not start with a digit.
Atomic groups
(?>...)Atomic non-capture group
(*atomic:...)Atomic non-capture group
Comment
(?#...)Comment (not nestable)
Option setting
Changes of these options within a group are automatically cancelled at the end of the group.
(?a)All ASCII options
(?aD)Restrict
\dto ASCII in UCP mode(?aS)Restrict
\sto ASCII in UCP mode(?aW)Restrict
\wto ASCII in UCP mode(?aP)Restrict all POSIX classes to ASCII in UCP mode
(?aT)Restrict POSIX digit classes to ASCII in UCP mode
(?i)Caseless
(?J)Allow duplicate named groups
(?m)Multiline
(?n)No auto capture
(?r)Restrict caseless to either ASCII or non-ASCII
(?s)Single line (dotall)
(?U)Default ungreedy (lazy)
(?x)Ignore white space except in classes or
\Q...\E(?xx)As
(?x), but also ignore space and tab in classes(?-...)Unset the given option(s)
(?^)Unset
imnrsxoptions
(?aP) implies (?aT) as well, though this has no additional effect. However, it
means that (?-aP) also implies (?-aT) and disables all ASCII restrictions for
POSIX classes.
Unsetting x or xx unsets both. Several options may be set at once, and a
mixture of setting and unsetting such as (?i-x) is allowed, but there may be
only one hyphen. Setting (but no unsetting) is allowed after (?^, for example
(?^in). An option setting may appear at the start of a non-capture group, for
example (?i:...).
The following are recognized only at the very start of a pattern or after one
of the newline or \R sequences or options with similar syntax. More than one
of them may appear. For the first three, d is a decimal number.
(*LIMIT_DEPTH=d)Set the backtracking limit to d
(*LIMIT_HEAP=d)Set the heap size limit to d * 1024 bytes
(*LIMIT_MATCH=d)Set the match limit to d
(*CASELESS_RESTRICT)Set
PCRE2_EXTRA_CASELESS_RESTRICTwhen matching(*NOTEMPTY)Set
PCRE2_NOTEMPTYwhen matching(*NOTEMPTY_ATSTART)Set
PCRE2_NOTEMPTY_ATSTARTwhen matching(*NO_AUTO_POSSESS)No auto-possessification (
PCRE2_NO_AUTO_POSSESS)(*NO_DOTSTAR_ANCHOR)No
.*anchoring (PCRE2_NO_DOTSTAR_ANCHOR)(*NO_JIT)Disable JIT optimization
(*NO_START_OPT)No start-match optimization (
PCRE2_NO_START_OPTIMIZE)(*TURKISH_CASING)Set
PCRE2_EXTRA_TURKISH_CASINGwhen matching(*UTF)Set appropriate UTF mode for the library in use
(*UCP)Set
PCRE2_UCP(use Unicode properties for\d, etc.)
Note that LIMIT_DEPTH, LIMIT_HEAP, and LIMIT_MATCH can only reduce the value of
the limits set by the caller of pcre2_match() or pcre2_dfa_match(),
not increase them. LIMIT_RECURSION is an obsolete synonym for LIMIT_DEPTH. The
application can lock out the use of (*UTF) and (*UCP) by setting the
PCRE2_NEVER_UTF or PCRE2_NEVER_UCP options, respectively, at compile time.
Newline convention
These are recognized only at the very start of the pattern or after option settings with a similar syntax.
(*CR)Carriage return only
(*LF)Linefeed only
(*CRLF)Carriage return followed by linefeed
(*ANYCRLF)All three of the above
(*ANY)Any Unicode newline sequence
(*NUL)The NUL character (binary zero)
What \R matches
These are recognized only at the very start of the pattern or after option setting with a similar syntax.
(*BSR_ANYCRLF)CR, LF, or CRLF
(*BSR_UNICODE)Any Unicode newline sequence
Lookahead and lookbehind assertions
(?=...)(*pla:...)(*positive_lookahead:...)Positive lookahead
(?!...)(*nla:...)(*negative_lookahead:...)Negative lookahead
(?<=...)(*plb:...)(*positive_lookbehind:...)Positive lookbehind
(?<!...)(*nlb:...)(*negative_lookbehind:...)Negative lookbehind
Each top-level branch of a lookbehind must have a limit for the number of
characters it matches. If any branch can match a variable number of characters,
the maximum for each branch is limited to a value set by the caller of
pcre2_compile() or defaulted. The default is set when PCRE2 is built
(ultimate default 255). If every branch matches a fixed number of characters,
the limit for each branch is 65535 characters.
Non-atomic lookaround assertions
These assertions are specific to PCRE2 and are not Perl-compatible.
(?*...)(*napla:...)(*non_atomic_positive_lookahead:...)Synonyms for non-atomic positive lookahead
(?<*...)(*naplb:...)(*non_atomic_positive_lookbehind:...)Synonyms for non-atomic positive lookbehind
Substring scan assertion
This feature is not Perl-compatible.
(*scan_substring:(grouplist)...)Scan captured substring
(*scs:(grouplist)...)Scan captured substring
The comma-separated list grouplist may identify groups in any of the following ways:
nAbsolute reference
+nRelative reference
-nRelative reference
<name>Name
'name'Name
Script runs
(*script_run:...)(*sr:...)Script run; can be backtracked into
(*atomic_script_run:...)(*asr:...)Atomic script run
Backreferences
\nReference by number (can be ambiguous)
\gnReference by number
\g{n}Reference by number
\g+nRelative reference by number (PCRE2 extension)
\g-nRelative reference by number
\g{+n}Relative reference by number (PCRE2 extension)
\g{-n}Relative reference by number
\k<name>Reference by name (Perl)
\k'name'Reference by name (Perl)
\g{name}Reference by name (Perl)
\k{name}Reference by name (.NET)
(?P=name)Reference by name (Python)
Subroutine references (possibly recursive)
(?R)Recurse whole pattern
(?n)Call subroutine by absolute number
(?+n)Call subroutine by relative number
(?-n)Call subroutine by relative number
(?&name)Call subroutine by name (Perl)
(?P>name)Call subroutine by name (Python)
\g<name>Call subroutine by name (Oniguruma)
\g'name'Call subroutine by name (Oniguruma)
\g<n>Call subroutine by absolute number (Oniguruma)
\g'n'Call subroutine by absolute number (Oniguruma)
\g<+n>Call subroutine by relative number (PCRE2 extension)
\g'+n'Call subroutine by relative number (PCRE2 extension)
\g<-n>Call subroutine by relative number (PCRE2 extension)
\g'-n'Call subroutine by relative number (PCRE2 extension)
The variants using parentheses (?...) may also specify a list of capture groups
to return, which shall be retained in the calling subexpression if set during
the recursion (this feature is not supported by Perl).
(?R(grouplist))Recurse whole pattern, returning capture groups (PCRE2 extension)
(?n(grouplist))(?+n(grouplist))(?-n(grouplist))(?&name(grouplist))(?P>name(grouplist))Call subroutine, returning capture groups (PCRE2 extension)
The comma-separated list grouplist uses the same syntax as
(*scan_substring:(grouplist)...), and may identify groups in any of the
following ways:
nAbsolute reference
+nRelative reference
-nRelative reference
<name>Name
'name'Name
Conditional patterns
(?(condition)yes-pattern)Conditional pattern without an alternative
(?(condition)yes-pattern|no-pattern)Conditional pattern with an alternative
The forms for the condition are:
(?(n)Absolute reference condition
(?(+n)Relative reference condition (PCRE2 extension)
(?(-n)Relative reference condition (PCRE2 extension)
(?(<name>)Named reference condition (Perl)
(?('name')Named reference condition (Perl)
(?(name)Named reference condition (PCRE2, deprecated)
(?(R)Overall recursion condition
(?(Rn)Specific numbered group recursion condition
(?(R&name)Specific named group recursion condition
(?(DEFINE)Define groups for reference
(?(VERSION[>]=n[.m])Test PCRE2 version
(?(assert)Assertion condition
Note the ambiguity of (?(R) and (?(Rn) which might be named reference
conditions or recursion tests. Such a condition is interpreted as a reference
condition if the relevant named group exists.
The parts within brackets for the VERSION conditional syntax can be ommited. The fractional part of the version number defaults to 0 in that case.
Backtracking control
All backtracking control verbs may be in the form (*VERB:NAME). For (*MARK) the
name is mandatory, for the others it is optional. (*SKIP) changes its behaviour
if :NAME is present. The others just set a name for passing back to the caller,
but this is not a name that (*SKIP) can see. The following act immediately they
are reached:
(*ACCEPT)Force successful match
(*FAIL)Force backtrack; synonym
(*F)(*MARK:NAME)Set name to be passed back; synonym
(*:NAME)
The following act only when a subsequent match failure causes a backtrack to reach them. They all force a match failure, but they differ in what happens afterwards. Those that advance the start-of-match point do so only if the pattern is not anchored.
(*COMMIT)Overall failure, no advance of starting point
(*PRUNE)Advance to next starting character
(*SKIP)Advance to current matching position
(*SKIP:NAME)Advance to position corresponding to an earlier
(*MARK:NAME); if not found, the(*SKIP)is ignored(*THEN)Local failure, backtrack to next alternation
The effect of one of these verbs in a group called as a subroutine is confined to the subroutine call.
Callouts
(?C)Callout (assumed number 0)
(?Cn)Callout with numerical data n
(?C"text")Callout with string data
The allowed string delimiters are ', ", ^,
%, #, and $ (which are the same for the start
and the end), and the starting delimiter { matched with the ending
delimiter }. To encode the ending delimiter within the string, double it.
Replacement strings
If the PCRE2_SUBSTITUTE_LITERAL option is set, a replacement string for
pcre2_substitute() is not interpreted. Otherwise, by default, the only
special character is the dollar character in one of the following forms:
$$Insert a dollar character
$nor${n}Insert the contents of group n
$<name>Insert the contents of named group
$0or$&Insert the entire matched substring
$`Insert the substring that precedes the match
$'Insert the substring that follows the match
$_Insert the entire input string
$+Insert the highest-numbered capture group which matched
$*MARKor${*MARK}Insert a control verb name
For ${n}, n can be a name or a number. If PCRE2_SUBSTITUTE_EXTENDED is set,
there is additional interpretation:
Backslash is an escape character, and the forms described in "ESCAPED CHARACTERS" above are recognized. Also:
\Q...\ESuppress interpretation
\lForce the next character to lower case
\uForce the next character to upper case
\LForce subsequent characters to lower case
\UForce subsequent characters to upper case
\u\LForce next character to upper case, then all lower
\l\UForce next character to lower case, then all upper
\EEnd
\Lor\Ucase forcing\bBackspace character (note: as in character class in pattern)
\vVertical tab character (note: not the same as in a pattern)
The Python form
\g<n>, where the angle brackets are part of the syntax and n is either a group name or a number, is recognized as an alternative way of inserting the contents of a group, for example\g<3>.Capture substitution supports the following additional forms:
${n:-string}Default for unset group
${n:+string1:string2}Values for set/unset group
The substitution strings themselves are expanded. Backslash can be used to escape colons and closing curly brackets.
See also
Author
Philip Hazel
Retired from University Computing Service
Cambridge, England.
Revision
Last updated: 14 October 2025
Copyright © 1997-2024 University of Cambridge.