summaryrefslogtreecommitdiff
path: root/Master/tlpkg/tlperl/lib/pods/perlrebackslash.pod
blob: 8f2490d78ee01cb5122ca616cc158984e1a7cfb9 (plain)
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
124
125
126
127
128
129
130
131
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
301
302
303
304
305
306
307
308
309
310
311
312
313
314
315
316
317
318
319
320
321
322
323
324
325
326
327
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
378
379
380
381
382
383
384
385
386
387
388
389
390
391
392
393
394
395
396
397
398
399
400
401
402
403
404
405
406
407
408
409
410
411
412
413
414
415
416
417
418
419
420
421
422
423
424
425
426
427
428
429
430
431
432
433
434
435
436
437
438
439
440
441
442
443
444
445
446
447
448
449
450
451
452
453
454
455
456
457
458
459
460
461
462
463
464
465
466
467
468
469
470
471
472
473
474
475
476
477
478
479
480
481
482
483
484
485
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
620
621
622
623
624
625
626
627
628
629
630
631
632
633
634
635
636
637
638
639
640
641
642
643
644
=head1 NAME

perlrebackslash - Perl Regular Expression Backslash Sequences and Escapes

=head1 DESCRIPTION

The top level documentation about Perl regular expressions
is found in L<perlre>.

This document describes all backslash and escape sequences. After
explaining the role of the backslash, it lists all the sequences that have
a special meaning in Perl regular expressions (in alphabetical order),
then describes each of them.

Most sequences are described in detail in different documents; the primary
purpose of this document is to have a quick reference guide describing all
backslash and escape sequences.

=head2 The backslash

In a regular expression, the backslash can perform one of two tasks:
it either takes away the special meaning of the character following it
(for instance, C<\|> matches a vertical bar, it's not an alternation),
or it is the start of a backslash or escape sequence.

The rules determining what it is are quite simple: if the character
following the backslash is an ASCII punctuation (non-word) character (that is,
anything that is not a letter, digit, or underscore), then the backslash just
takes away any special meaning of the character following it.

If the character following the backslash is an ASCII letter or an ASCII digit,
then the sequence may be special; if so, it's listed below. A few letters have
not been used yet, so escaping them with a backslash doesn't change them to be
special.  A future version of Perl may assign a special meaning to them, so if
you have warnings turned on, Perl issues a warning if you use such a
sequence.  [1].

It is however guaranteed that backslash or escape sequences never have a
punctuation character following the backslash, not now, and not in a future
version of Perl 5. So it is safe to put a backslash in front of a non-word
character.

Note that the backslash itself is special; if you want to match a backslash,
you have to escape the backslash with a backslash: C</\\/> matches a single
backslash.

=over 4

=item [1]

There is one exception. If you use an alphanumeric character as the
delimiter of your pattern (which you probably shouldn't do for readability
reasons), you have to escape the delimiter if you want to match
it. Perl won't warn then. See also L<perlop/Gory details of parsing
quoted constructs>.

=back


=head2 All the sequences and escapes

Those not usable within a bracketed character class (like C<[\da-z]>) are marked
as C<Not in [].>

 \000              Octal escape sequence.  See also \o{}.
 \1                Absolute backreference.  Not in [].
 \a                Alarm or bell.
 \A                Beginning of string.  Not in [].
 \b                Word/non-word boundary. (Backspace in []).
 \B                Not a word/non-word boundary.  Not in [].
 \cX               Control-X
 \C                Single octet, even under UTF-8.  Not in [].
 \d                Character class for digits.
 \D                Character class for non-digits.
 \e                Escape character.
 \E                Turn off \Q, \L and \U processing.  Not in [].
 \f                Form feed.
 \g{}, \g1         Named, absolute or relative backreference.  Not in []
 \G                Pos assertion.  Not in [].
 \h                Character class for horizontal whitespace.
 \H                Character class for non horizontal whitespace.
 \k{}, \k<>, \k''  Named backreference.  Not in [].
 \K                Keep the stuff left of \K.  Not in [].
 \l                Lowercase next character.  Not in [].
 \L                Lowercase till \E.  Not in [].
 \n                (Logical) newline character.
 \N                Any character but newline.  Experimental.  Not in [].
 \N{}              Named or numbered (Unicode) character or sequence.
 \o{}              Octal escape sequence.
 \p{}, \pP         Character with the given Unicode property.
 \P{}, \PP         Character without the given Unicode property.
 \Q                Quotemeta till \E.  Not in [].
 \r                Return character.
 \R                Generic new line.  Not in [].
 \s                Character class for whitespace.
 \S                Character class for non whitespace.
 \t                Tab character.
 \u                Titlecase next character.  Not in [].
 \U                Uppercase till \E.  Not in [].
 \v                Character class for vertical whitespace.
 \V                Character class for non vertical whitespace.
 \w                Character class for word characters.
 \W                Character class for non-word characters.
 \x{}, \x00        Hexadecimal escape sequence.
 \X                Unicode "extended grapheme cluster".  Not in [].
 \z                End of string.  Not in [].
 \Z                End of string.  Not in [].

=head2 Character Escapes

=head3  Fixed characters

A handful of characters have a dedicated I<character escape>. The following
table shows them, along with their ASCII code points (in decimal and hex),
their ASCII name, the control escape on ASCII platforms and a short
description.  (For EBCDIC platforms, see L<perlebcdic/OPERATOR DIFFERENCES>.)

 Seq.  Code Point  ASCII   Cntrl   Description.
       Dec    Hex
  \a     7     07    BEL    \cG    alarm or bell
  \b     8     08     BS    \cH    backspace [1]
  \e    27     1B    ESC    \c[    escape character
  \f    12     0C     FF    \cL    form feed
  \n    10     0A     LF    \cJ    line feed [2]
  \r    13     0D     CR    \cM    carriage return
  \t     9     09    TAB    \cI    tab

=over 4

=item [1]

C<\b> is the backspace character only inside a character class. Outside a
character class, C<\b> is a word/non-word boundary.

=item [2]

C<\n> matches a logical newline. Perl converts between C<\n> and your
OS's native newline character when reading from or writing to text files.

=back

=head4 Example

 $str =~ /\t/;   # Matches if $str contains a (horizontal) tab.

=head3 Control characters

C<\c> is used to denote a control character; the character following C<\c>
determines the value of the construct.  For example the value of C<\cA> is
C<chr(1)>, and the value of C<\cb> is C<chr(2)>, etc.
The gory details are in L<perlop/"Regexp Quote-Like Operators">.  A complete
list of what C<chr(1)>, etc. means for ASCII and EBCDIC platforms is in
L<perlebcdic/OPERATOR DIFFERENCES>.

Note that C<\c\> alone at the end of a regular expression (or doubled-quoted
string) is not valid.  The backslash must be followed by another character.
That is, C<\c\I<X>> means C<chr(28) . 'I<X>'> for all characters I<X>.

To write platform-independent code, you must use C<\N{I<NAME>}> instead, like
C<\N{ESCAPE}> or C<\N{U+001B}>, see L<charnames>.

Mnemonic: I<c>ontrol character.

=head4 Example

 $str =~ /\cK/;  # Matches if $str contains a vertical tab (control-K).

=head3 Named or numbered characters and character sequences

Unicode characters have a Unicode name and numeric code point (ordinal)
value.  Use the
C<\N{}> construct to specify a character by either of these values.
Certain sequences of characters also have names.

To specify by name, the name of the character or character sequence goes
between the curly braces.  In this case, you have to C<use charnames> to
load the Unicode names of the characters; otherwise Perl will complain.

To specify a character by Unicode code point, use the form C<\N{U+I<code
point>}>, where I<code point> is a number in hexadecimal that gives the
code point that Unicode has assigned to the desired character.  It is
customary but not required to use leading zeros to pad the number to 4
digits.  Thus C<\N{U+0041}> means C<LATIN CAPITAL LETTER A>, and you will
rarely see it written without the two leading zeros.  C<\N{U+0041}> means
"A" even on EBCDIC machines (where the ordinal value of "A" is not 0x41).

It is even possible to give your own names to characters and character
sequences.  For details, see L<charnames>.

(There is an expanded internal form that you may see in debug output:
C<\N{U+I<code point>.I<code point>...}>.
The C<...> means any number of these I<code point>s separated by dots.
This represents the sequence formed by the characters.  This is an internal
form only, subject to change, and you should not try to use it yourself.)

Mnemonic: I<N>amed character.

Note that a character or character sequence expressed as a named
or numbered character is considered a character without special
meaning by the regex engine, and will match "as is".

=head4 Example

 use charnames ':full';               # Loads the Unicode names.
 $str =~ /\N{THAI CHARACTER SO SO}/;  # Matches the Thai SO SO character

 use charnames 'Cyrillic';            # Loads Cyrillic names.
 $str =~ /\N{ZHE}\N{KA}/;             # Match "ZHE" followed by "KA".

=head3 Octal escapes

There are two forms of octal escapes.  Each is used to specify a character by
its code point specified in octal notation.

One form, available starting in Perl 5.14 looks like C<\o{...}>, where the dots
represent one or more octal digits.  It can be used for any Unicode character.

It was introduced to avoid the potential problems with the other form,
available in all Perls.  That form consists of a backslash followed by three
octal digits.  One problem with this form is that it can look exactly like an
old-style backreference (see
L</Disambiguation rules between old-style octal escapes and backreferences>
below.)  You can avoid this by making the first of the three digits always a
zero, but that makes \077 the largest code point specifiable.

In some contexts, a backslash followed by two or even one octal digits may be
interpreted as an octal escape, sometimes with a warning, and because of some
bugs, sometimes with surprising results.  Also, if you are creating a regex
out of smaller snippets concatenated together, and you use fewer than three
digits, the beginning of one snippet may be interpreted as adding digits to the
ending of the snippet before it.  See L</Absolute referencing> for more
discussion and examples of the snippet problem.

Note that a character expressed as an octal escape is considered
a character without special meaning by the regex engine, and will match
"as is".

To summarize, the C<\o{}> form is always safe to use, and the other form is
safe to use for code points through \077 when you use exactly three digits to
specify them.

Mnemonic: I<0>ctal or I<o>ctal.

=head4 Examples (assuming an ASCII platform)

 $str = "Perl";
 $str =~ /\o{120}/;  # Match, "\120" is "P".
 $str =~ /\120/;     # Same.
 $str =~ /\o{120}+/; # Match, "\120" is "P", it's repeated at least once
 $str =~ /\120+/;    # Same.
 $str =~ /P\053/;    # No match, "\053" is "+" and taken literally.
 /\o{23073}/         # Black foreground, white background smiling face.
 /\o{4801234567}/    # Raises a warning, and yields chr(4)

=head4 Disambiguation rules between old-style octal escapes and backreferences

Octal escapes of the C<\000> form outside of bracketed character classes
potentially clash with old-style backreferences.  (see L</Absolute referencing>
below).  They both consist of a backslash followed by numbers.  So Perl has to
use heuristics to determine whether it is a backreference or an octal escape.
Perl uses the following rules to disambiguate:

=over 4

=item 1

If the backslash is followed by a single digit, it's a backreference.

=item 2

If the first digit following the backslash is a 0, it's an octal escape.

=item 3

If the number following the backslash is N (in decimal), and Perl already
has seen N capture groups, Perl considers this a backreference.  Otherwise,
it considers it an octal escape. If N has more than three digits, Perl
takes only the first three for the octal escape; the rest are matched as is.

 my $pat  = "(" x 999;
    $pat .= "a";
    $pat .= ")" x 999;
 /^($pat)\1000$/;   #  Matches 'aa'; there are 1000 capture groups.
 /^$pat\1000$/;     #  Matches 'a@0'; there are 999 capture groups
                    #    and \1000 is seen as \100 (a '@') and a '0'

=back

You can force a backreference interpretation always by using the C<\g{...}>
form.  You can the force an octal interpretation always by using the C<\o{...}>
form, or for numbers up through \077 (= 63 decimal), by using three digits,
beginning with a "0".

=head3 Hexadecimal escapes

Like octal escapes, there are two forms of hexadecimal escapes, but both start
with the same thing, C<\x>.  This is followed by either exactly two hexadecimal
digits forming a number, or a hexadecimal number of arbitrary length surrounded
by curly braces. The hexadecimal number is the code point of the character you
want to express.

Note that a character expressed as one of these escapes is considered a
character without special meaning by the regex engine, and will match
"as is".

Mnemonic: heI<x>adecimal.

=head4 Examples (assuming an ASCII platform)

 $str = "Perl";
 $str =~ /\x50/;    # Match, "\x50" is "P".
 $str =~ /\x50+/;   # Match, "\x50" is "P", it is repeated at least once
 $str =~ /P\x2B/;   # No match, "\x2B" is "+" and taken literally.

 /\x{2603}\x{2602}/ # Snowman with an umbrella.
                    # The Unicode character 2603 is a snowman,
                    # the Unicode character 2602 is an umbrella.
 /\x{263B}/         # Black smiling face.
 /\x{263b}/         # Same, the hex digits A - F are case insensitive.

=head2 Modifiers

A number of backslash sequences have to do with changing the character,
or characters following them. C<\l> will lowercase the character following
it, while C<\u> will uppercase (or, more accurately, titlecase) the
character following it. They provide functionality similar to the
functions C<lcfirst> and C<ucfirst>.

To uppercase or lowercase several characters, one might want to use
C<\L> or C<\U>, which will lowercase/uppercase all characters following
them, until either the end of the pattern or the next occurrence of
C<\E>, whichever comes first. They provide functionality similar to what
the functions C<lc> and C<uc> provide.

C<\Q> is used to escape all characters following, up to the next C<\E>
or the end of the pattern. C<\Q> adds a backslash to any character that
isn't a letter, digit, or underscore. This ensures that any character
between C<\Q> and C<\E> shall be matched literally, not interpreted
as a metacharacter by the regex engine.

Mnemonic: I<L>owercase, I<U>ppercase, I<Q>uotemeta, I<E>nd.

=head4 Examples

 $sid     = "sid";
 $greg    = "GrEg";
 $miranda = "(Miranda)";
 $str     =~ /\u$sid/;        # Matches 'Sid'
 $str     =~ /\L$greg/;       # Matches 'greg'
 $str     =~ /\Q$miranda\E/;  # Matches '(Miranda)', as if the pattern
                              #   had been written as /\(Miranda\)/

=head2 Character classes

Perl regular expressions have a large range of character classes. Some of
the character classes are written as a backslash sequence. We will briefly
discuss those here; full details of character classes can be found in
L<perlrecharclass>.

C<\w> is a character class that matches any single I<word> character
(letters, digits, Unicode marks, and connector punctuation (like the
underscore)).  C<\d> is a character class that matches any decimal
digit, while the character class C<\s> matches any whitespace character.
New in perl 5.10.0 are the classes C<\h> and C<\v> which match horizontal
and vertical whitespace characters.

The exact set of characters matched by C<\d>, C<\s>, and C<\w> varies
depending on various pragma and regular expression modifiers.  It is
possible to restrict the match to the ASCII range by using the C</a>
regular expression modifier.  See L<perlrecharclass>.

The uppercase variants (C<\W>, C<\D>, C<\S>, C<\H>, and C<\V>) are
character classes that match, respectively, any character that isn't a
word character, digit, whitespace, horizontal whitespace, or vertical
whitespace.

Mnemonics: I<w>ord, I<d>igit, I<s>pace, I<h>orizontal, I<v>ertical.

=head3 Unicode classes

C<\pP> (where C<P> is a single letter) and C<\p{Property}> are used to
match a character that matches the given Unicode property; properties
include things like "letter", or "thai character". Capitalizing the
sequence to C<\PP> and C<\P{Property}> make the sequence match a character
that doesn't match the given Unicode property. For more details, see
L<perlrecharclass/Backslash sequences> and
L<perlunicode/Unicode Character Properties>.

Mnemonic: I<p>roperty.

=head2 Referencing

If capturing parenthesis are used in a regular expression, we can refer
to the part of the source string that was matched, and match exactly the
same thing. There are three ways of referring to such I<backreference>:
absolutely, relatively, and by name.

=for later add link to perlrecapture

=head3 Absolute referencing

Either C<\gI<N>> (starting in Perl 5.10.0), or C<\I<N>> (old-style) where I<N>
is a positive (unsigned) decimal number of any length is an absolute reference
to a capturing group.

I<N> refers to the Nth set of parentheses, so C<\gI<N>> refers to whatever has
been matched by that set of parentheses.  Thus C<\g1> refers to the first
capture group in the regex.

The C<\gI<N>> form can be equivalently written as C<\g{I<N>}>
which avoids ambiguity when building a regex by concatenating shorter
strings.  Otherwise if you had a regex C<qr/$a$b/>, and C<$a> contained
C<"\g1">, and C<$b> contained C<"37">, you would get C</\g137/> which is
probably not what you intended.

In the C<\I<N>> form, I<N> must not begin with a "0", and there must be at
least I<N> capturing groups, or else I<N> is considered an octal escape
(but something like C<\18> is the same as C<\0018>; that is, the octal escape
C<"\001"> followed by a literal digit C<"8">).

Mnemonic: I<g>roup.

=head4 Examples

 /(\w+) \g1/;    # Finds a duplicated word, (e.g. "cat cat").
 /(\w+) \1/;     # Same thing; written old-style
 /(.)(.)\g2\g1/;  # Match a four letter palindrome (e.g. "ABBA").


=head3 Relative referencing

C<\g-I<N>> (starting in Perl 5.10.0) is used for relative addressing.  (It can
be written as C<\g{-I<N>>.)  It refers to the I<N>th group before the
C<\g{-I<N>}>.

The big advantage of this form is that it makes it much easier to write
patterns with references that can be interpolated in larger patterns,
even if the larger pattern also contains capture groups.

=head4 Examples

 /(A)        # Group 1
  (          # Group 2
    (B)      # Group 3
    \g{-1}   # Refers to group 3 (B)
    \g{-3}   # Refers to group 1 (A)
  )
 /x;         # Matches "ABBA".

 my $qr = qr /(.)(.)\g{-2}\g{-1}/;  # Matches 'abab', 'cdcd', etc.
 /$qr$qr/                           # Matches 'ababcdcd'.

=head3 Named referencing

C<\g{I<name>}> (starting in Perl 5.10.0) can be used to back refer to a
named capture group, dispensing completely with having to think about capture
buffer positions.

To be compatible with .Net regular expressions, C<\g{name}> may also be
written as C<\k{name}>, C<< \k<name> >> or C<\k'name'>.

To prevent any ambiguity, I<name> must not start with a digit nor contain a
hyphen.

=head4 Examples

 /(?<word>\w+) \g{word}/ # Finds duplicated word, (e.g. "cat cat")
 /(?<word>\w+) \k{word}/ # Same.
 /(?<word>\w+) \k<word>/ # Same.
 /(?<letter1>.)(?<letter2>.)\g{letter2}\g{letter1}/
                         # Match a four letter palindrome (e.g. "ABBA")

=head2 Assertions

Assertions are conditions that have to be true; they don't actually
match parts of the substring. There are six assertions that are written as
backslash sequences.

=over 4

=item \A

C<\A> only matches at the beginning of the string. If the C</m> modifier
isn't used, then C</\A/> is equivalent to C</^/>. However, if the C</m>
modifier is used, then C</^/> matches internal newlines, but the meaning
of C</\A/> isn't changed by the C</m> modifier. C<\A> matches at the beginning
of the string regardless whether the C</m> modifier is used.

=item \z, \Z

C<\z> and C<\Z> match at the end of the string. If the C</m> modifier isn't
used, then C</\Z/> is equivalent to C</$/>; that is, it matches at the
end of the string, or one before the newline at the end of the string. If the
C</m> modifier is used, then C</$/> matches at internal newlines, but the
meaning of C</\Z/> isn't changed by the C</m> modifier. C<\Z> matches at
the end of the string (or just before a trailing newline) regardless whether
the C</m> modifier is used.

C<\z> is just like C<\Z>, except that it does not match before a trailing
newline. C<\z> matches at the end of the string only, regardless of the
modifiers used, and not just before a newline.  It is how to anchor the
match to the true end of the string under all conditions.

=item \G

C<\G> is usually used only in combination with the C</g> modifier. If the
C</g> modifier is used and the match is done in scalar context, Perl 
remembers where in the source string the last match ended, and the next time,
it will start the match from where it ended the previous time.

C<\G> matches the point where the previous match on that string ended, 
or the beginning of that string if there was no previous match.

=for later add link to perlremodifiers

Mnemonic: I<G>lobal.

=item \b, \B

C<\b> matches at any place between a word and a non-word character; C<\B>
matches at any place between characters where C<\b> doesn't match. C<\b>
and C<\B> assume there's a non-word character before the beginning and after
the end of the source string; so C<\b> will match at the beginning (or end)
of the source string if the source string begins (or ends) with a word
character. Otherwise, C<\B> will match.   

Do not use something like C<\b=head\d\b> and expect it to match the
beginning of a line.  It can't, because for there to be a boundary before
the non-word "=", there must be a word character immediately previous.  
All boundary determinations look for word characters alone, not for
non-words characters nor for string ends.  It may help to understand how
<\b> and <\B> work by equating them as follows:

    \b	really means	(?:(?<=\w)(?!\w)|(?<!\w)(?=\w))
    \B	really means	(?:(?<=\w)(?=\w)|(?<!\w)(?!\w))

Mnemonic: I<b>oundary.

=back

=head4 Examples

  "cat"   =~ /\Acat/;     # Match.
  "cat"   =~ /cat\Z/;     # Match.
  "cat\n" =~ /cat\Z/;     # Match.
  "cat\n" =~ /cat\z/;     # No match.

  "cat"   =~ /\bcat\b/;   # Matches.
  "cats"  =~ /\bcat\b/;   # No match.
  "cat"   =~ /\bcat\B/;   # No match.
  "cats"  =~ /\bcat\B/;   # Match.

  while ("cat dog" =~ /(\w+)/g) {
      print $1;           # Prints 'catdog'
  }
  while ("cat dog" =~ /\G(\w+)/g) {
      print $1;           # Prints 'cat'
  }

=head2 Misc

Here we document the backslash sequences that don't fall in one of the
categories above. These are:

=over 4

=item \C

C<\C> always matches a single octet, even if the source string is encoded
in UTF-8 format, and the character to be matched is a multi-octet character.
C<\C> was introduced in perl 5.6.  This is very dangerous, because it violates
the logical character abstraction and can cause UTF-8 sequences to become malformed.

Mnemonic: oI<C>tet.

=item \K

This appeared in perl 5.10.0. Anything matched left of C<\K> is
not included in C<$&>, and will not be replaced if the pattern is
used in a substitution. This lets you write C<s/PAT1 \K PAT2/REPL/x>
instead of C<s/(PAT1) PAT2/${1}REPL/x> or C<s/(?<=PAT1) PAT2/REPL/x>.

Mnemonic: I<K>eep.

=item \N

This is an experimental feature new to perl 5.12.0.  It matches any character
that is B<not> a newline.  It is a short-hand for writing C<[^\n]>, and is
identical to the C<.> metasymbol, except under the C</s> flag, which changes
the meaning of C<.>, but not C<\N>.

Note that C<\N{...}> can mean a
L<named or numbered character
|/Named or numbered characters and character sequences>.

Mnemonic: Complement of I<\n>.

=item \R
X<\R>

C<\R> matches a I<generic newline>; that is, anything considered a
linebreak sequence by Unicode. This includes all characters matched by
C<\v> (vertical whitespace), and the multi character sequence C<"\x0D\x0A">
(carriage return followed by a line feed, sometimes called the network
newline; it's the end of line sequence used in Microsoft text files opened
in binary mode). C<\R> is equivalent to C<< (?>\x0D\x0A)|\v) >>. Since
C<\R> can match a sequence of more than one character, it cannot be put
inside a bracketed character class; C</[\R]/> is an error; use C<\v>
instead.  C<\R> was introduced in perl 5.10.0.

Mnemonic: none really. C<\R> was picked because PCRE already uses C<\R>,
and more importantly because Unicode recommends such a regular expression
metacharacter, and suggests C<\R> as its notation.

=item \X
X<\X>

This matches a Unicode I<extended grapheme cluster>.

C<\X> matches quite well what normal (non-Unicode-programmer) usage
would consider a single character.  As an example, consider a G with some sort
of diacritic mark, such as an arrow.  There is no such single character in
Unicode, but one can be composed by using a G followed by a Unicode "COMBINING
UPWARDS ARROW BELOW", and would be displayed by Unicode-aware software as if it
were a single character.

Mnemonic: eI<X>tended Unicode character.

=back

=head4 Examples

 "\x{256}" =~ /^\C\C$/;    # Match as chr (0x256) takes 2 octets in UTF-8.

 $str =~ s/foo\Kbar/baz/g; # Change any 'bar' following a 'foo' to 'baz'
 $str =~ s/(.)\K\g1//g;    # Delete duplicated characters.

 "\n"   =~ /^\R$/;         # Match, \n   is a generic newline.
 "\r"   =~ /^\R$/;         # Match, \r   is a generic newline.
 "\r\n" =~ /^\R$/;         # Match, \r\n is a generic newline.

 "P\x{307}" =~ /^\X$/     # \X matches a P with a dot above.

=cut