Security Advisories (11)
CVE-2024-56406 (2025-04-13)

A heap buffer overflow vulnerability was discovered in Perl. Release branches 5.34, 5.36, 5.38 and 5.40 are affected, including development versions from 5.33.1 through 5.41.10. When there are non-ASCII bytes in the left-hand-side of the `tr` operator, `S_do_trans_invmap` can overflow the destination pointer `d`.    $ perl -e '$_ = "\x{FF}" x 1000000; tr/\xFF/\x{100}/;'    Segmentation fault (core dumped) It is believed that this vulnerability can enable Denial of Service and possibly Code Execution attacks on platforms that lack sufficient defenses.

CVE-2023-47038 (2023-10-30)

A crafted regular expression when compiled by perl 5.30.0 through 5.38.0 can cause a one attacker controlled byte buffer overflow in a heap allocated buffer

CVE-2023-47100

In Perl before 5.38.2, S_parse_uniprop_string in regcomp.c can write to unallocated space because a property name associated with a \p{...} regular expression construct is mishandled. The earliest affected version is 5.30.0.

CVE-2025-40909 (2025-05-30)

Perl threads have a working directory race condition where file operations may target unintended paths. If a directory handle is open at thread creation, the process-wide current working directory is temporarily changed in order to clone that handle for the new thread, which is visible from any third (or more) thread already running. This may lead to unintended operations such as loading code or accessing files from unexpected locations, which a local attacker may be able to exploit. The bug was introduced in commit 11a11ecf4bea72b17d250cfb43c897be1341861e and released in Perl version 5.13.6

CVE-2026-13221 (2026-07-13)

Perl versions through 5.43.9 produce silently incorrect regular expression matches when an alternation of more than 65535 fixed string branches is compiled into a trie in Perl_study_chunk. When such branches are combined into a trie, the delta between the first branch and the shared tail is stored in a 16-bit field. A branch count above 65535 overflows the field, and the trie's match decision table is truncated with no warning or error. A pattern of this shape produces false positive matches (matching strings it should not) and false negative matches (failing to match strings it should). When such a pattern gates an access or filtering decision, the result is wrong.

CVE-2026-15534 (2026-08-09)

Perl versions through 5.45.1 have out-of-bounds heap reads and writes during regular expression matching via an undersized superlinear cache in S_regmatch. The regex engine's superlinear cache holds one bit per subject position for each participating WHILEM node, so the bit count is the subject length plus one times the number of nodes. Nothing checks that product for positive overflow of the signed 32-bit count: a 286331153 byte subject matched against a pattern with 15 participating nodes stores the count as 14, leaving a two byte cache. The cache is then indexed from the real match position and node number, so reads go past the end of the allocation, and on failure CACHEsayNO sets a bit past it. A caller that matches an attacker controlled subject of this size against a pattern of this shape can crash the process or corrupt heap memory.

CVE-2026-19487 (2026-08-13)

Perl versions from 5.9.4 before 5.41.9 produce incorrect regular expression match results when a stale failure flag ends the Aho-Corasick prescan early in S_find_byclass. The prescan walks the subject for positions where the full pattern could match, and the engine tries it from the leftmost one recorded. A failing transition sets the failed flag, and a later successful transition does not clear it, so the prescan reads the stale flag as a failure and stops before it can record a candidate that starts earlier. It takes a subject where one candidate is recorded and a later character then forces a fallback through a fail link that succeeds. Example: "ABCDE" =~ m/ABCF|BCDE|C/; # matches C at offset 2, not BCDE "ABCDE" =~ m/ABCF|BCDE|C(G)/; # no match, BCDE missed An alternation like this can miss input it should match, or match it on the wrong branch, so an access or filtering decision made from the result can be wrong.

CVE-2026-4176 (2026-03-29)

Perl versions from 5.9.4 before 5.40.4-RC1, from 5.41.0 before 5.42.2-RC1, from 5.43.0 before 5.43.9 contain a vulnerable version of Compress::Raw::Zlib. Compress::Raw::Zlib is included in the Perl package as a dual-life core module, and is vulnerable to CVE-2026-3381 due to a vendored version of zlib which has several vulnerabilities, including CVE-2026-27171. The bundled Compress::Raw::Zlib was updated to version 2.221 in Perl blead commit c75ae9cc164205e1b6d6dbd57bd2c65c8593fe94.

CVE-2026-57432 (2026-07-13)

Perl versions through 5.43.10 have an integer overflow in S_measure_struct leading to an out-of-bounds heap read in pack and unpack. S_measure_struct adds each item's size times its repeat count to a running total with no overflow check, so a large repeat count in a pack or unpack template wraps the signed SSize_t total negative. The @, X, and x position codes then guard their moves with a signed length comparison that passes when the length is negative, advancing the buffer pointer out of bounds. A template derived from untrusted input can read heap memory past the buffer and return it to the caller.

CVE-2026-8376 (2026-05-25)

Perl versions through 5.43.10 have a heap buffer overflow when compiling regular expressions with a repeated fixed string on 32-bit builds. Perl_study_chunk in regcomp_study.c checked the size of the joined substring buffer in characters rather than bytes. For a quantified fixed substring with a large minimum count, the byte length mincount * l could overflow SSize_t, producing an undersized SvGROW allocation; the subsequent copy writes past the end of the buffer. A caller that compiles an attacker-controlled regular expression on a 32-bit perl build triggers a heap buffer overflow at compile time.

CVE-2023-47039 (2023-10-30)

Perl for Windows relies on the system path environment variable to find the shell (cmd.exe). When running an executable which uses Windows Perl interpreter, Perl attempts to find and execute cmd.exe within the operating system. However, due to path search order issues, Perl initially looks for cmd.exe in the current working directory. An attacker with limited privileges can exploit this behavior by placing cmd.exe in locations with weak permissions, such as C:\ProgramData. By doing so, when an administrator attempts to use this executable from these compromised locations, arbitrary code can be executed.

NAME

Scalar::Util - A selection of general-utility scalar subroutines

SYNOPSIS

use Scalar::Util qw(blessed dualvar isdual readonly refaddr reftype
                    tainted weaken isweak isvstring looks_like_number
                    set_prototype);
                    # and other useful utils appearing below

DESCRIPTION

Scalar::Util contains a selection of subroutines that people have expressed would be nice to have in the perl core, but the usage would not really be high enough to warrant the use of a keyword, and the size would be so small that being individual extensions would be wasteful.

By default Scalar::Util does not export any subroutines.

Core Perl builtin Functions

Many functions in this module have served as the inspiration for a new experimental facility in recent versions of Perl. From various development versions, starting at 5.35.7, equivalent functions to many of these utilities are available in the builtin:: package.

use Scalar::Util qw(blessed);

$class = blessed $obj;

$class = builtin::blessed $obj;  # equivalent

For more information, see the documentation on builtin.

FUNCTIONS FOR REFERENCES

The following functions all perform some useful activity on reference values.

blessed

my $pkg = blessed( $ref );

If $ref is a blessed reference, the name of the package that it is blessed into is returned. Otherwise undef is returned.

$scalar = "foo";
$class  = blessed $scalar;           # undef

$ref    = [];
$class  = blessed $ref;              # undef

$obj    = bless [], "Foo";
$class  = blessed $obj;              # "Foo"

Take care when using this function simply as a truth test (such as in if(blessed $ref)...) because the package name "0" is defined yet false.

Since Perl version 5.35.7 an equivalent function is available as builtin::blessed.

refaddr

my $addr = refaddr( $ref );

If $ref is reference, the internal memory address of the referenced value is returned as a plain integer. Otherwise undef is returned.

$addr = refaddr "string";           # undef
$addr = refaddr \$var;              # eg 12345678
$addr = refaddr [];                 # eg 23456784

$obj  = bless {}, "Foo";
$addr = refaddr $obj;               # eg 88123488

Since Perl version 5.35.7 an equivalent function is available as builtin::refaddr.

reftype

my $type = reftype( $ref );

If $ref is a reference, the basic Perl type of the variable referenced is returned as a plain string (such as ARRAY or HASH). Otherwise undef is returned.

$type = reftype "string";           # undef
$type = reftype \$var;              # SCALAR
$type = reftype [];                 # ARRAY

$obj  = bless {}, "Foo";
$type = reftype $obj;               # HASH

Note that for internal reasons, all precompiled regexps (qr/.../) are blessed references; thus ref() returns the package name string "Regexp" on these but reftype() will return the underlying C structure type of "REGEXP" in all capitals.

Since Perl version 5.35.7 an equivalent function is available as builtin::refaddr.

weaken

weaken( $ref );

The lvalue $ref will be turned into a weak reference. This means that it will not hold a reference count on the object it references. Also, when the reference count on that object reaches zero, the reference will be set to undef. This function mutates the lvalue passed as its argument and returns no value.

This is useful for keeping copies of references, but you don't want to prevent the object being DESTROY-ed at its usual time.

{
  my $var;
  $ref = \$var;
  weaken($ref);                     # Make $ref a weak reference
}
# $ref is now undef

Note that if you take a copy of a scalar with a weakened reference, the copy will be a strong reference.

my $var;
my $foo = \$var;
weaken($foo);                       # Make $foo a weak reference
my $bar = $foo;                     # $bar is now a strong reference

This may be less obvious in other situations, such as grep(), for instance when grepping through a list of weakened references to objects that may have been destroyed already:

@object = grep { defined } @object;

This will indeed remove all references to destroyed objects, but the remaining references to objects will be strong, causing the remaining objects to never be destroyed because there is now always a strong reference to them in the @object array.

Since Perl version 5.35.7 an equivalent function is available as builtin::weaken.

unweaken

unweaken( $ref );

Since version 1.36.

The lvalue REF will be turned from a weak reference back into a normal (strong) reference again. This function mutates the lvalue passed as its argument and returns no value. This undoes the action performed by "weaken".

This function is slightly neater and more convenient than the otherwise-equivalent code

my $tmp = $REF;
undef $REF;
$REF = $tmp;

(because in particular, simply assigning a weak reference back to itself does not work to unweaken it; $REF = $REF does not work).

Since Perl version 5.35.7 an equivalent function is available as builtin::unweaken.

isweak

my $weak = isweak( $ref );

Returns true if $ref is a weak reference.

$ref  = \$foo;
$weak = isweak($ref);               # false
weaken($ref);
$weak = isweak($ref);               # true

NOTE: Copying a weak reference creates a normal, strong, reference.

$copy = $ref;
$weak = isweak($copy);              # false

Since Perl version 5.35.7 an equivalent function is available as builtin::isweak.

OTHER FUNCTIONS

dualvar

my $var = dualvar( $num, $string );

Returns a scalar that has the value $num in a numeric context and the value $string in a string context.

$foo = dualvar 10, "Hello";
$num = $foo + 2;                    # 12
$str = $foo . " world";             # Hello world

isdual

my $dual = isdual( $var );

Since version 1.26.

If $var is a scalar that has both numeric and string values, the result is true.

$foo = dualvar 86, "Nix";
$dual = isdual($foo);               # true

Note that a scalar can be made to have both string and numeric content through standard operations:

$foo = "10";
$dual = isdual($foo);               # false
$bar = $foo + 0;
$dual = isdual($foo);               # true

The $! variable is commonly dual-valued, though it is also magical in other ways:

$! = 1;
$dual = isdual($!);                 # true
print("$!\n");                      # "Operation not permitted"

CAUTION: This function is not as useful as it may seem. Dualvars are not a distinct concept in Perl, but a standard internal construct of all scalar values. Almost any value could be considered as a dualvar by this function through the course of normal operations.

isvstring

my $vstring = isvstring( $var );

If $var is a scalar which was coded as a vstring, the result is true.

$vs   = v49.46.48;
$fmt  = isvstring($vs) ? "%vd" : "%s"; #true
printf($fmt,$vs);

looks_like_number

my $isnum = looks_like_number( $var );

Returns true if perl thinks $var is a number. See "looks_like_number" in perlapi.

openhandle

my $fh = openhandle( $fh );

Returns $fh itself, if $fh may be used as a filehandle and is open, or if it is a tied handle. Otherwise undef is returned.

$fh = openhandle(*STDIN);           # \*STDIN
$fh = openhandle(\*STDIN);          # \*STDIN
$fh = openhandle(*NOTOPEN);         # undef
$fh = openhandle("scalar");         # undef

readonly

my $ro = readonly( $var );

Returns true if $var is readonly.

sub foo { readonly($_[0]) }

$readonly = foo($bar);              # false
$readonly = foo(0);                 # true

set_prototype

my $code = set_prototype( $code, $prototype );

Sets the prototype of the function given by the $code reference, or deletes it if $prototype is undef. Returns the $code reference itself.

set_prototype \&foo, '$$';

tainted

my $t = tainted( $var );

Return true if $var is tainted.

$taint = tainted("constant");       # false
$taint = tainted($ENV{PWD});        # true if running under -T

DIAGNOSTICS

Module use may give one of the following errors during import.

Vstrings are not implemented in this version of perl

The version of perl that you are using does not implement Vstrings, to use "isvstring" you will need to use a newer release of perl.

KNOWN BUGS

There is a bug in perl5.6.0 with UV's that are >= 1<<31. This will show up as tests 8 and 9 of dualvar.t failing

SEE ALSO

List::Util

COPYRIGHT

Copyright (c) 1997-2007 Graham Barr <gbarr@pobox.com>. All rights reserved. This program is free software; you can redistribute it and/or modify it under the same terms as Perl itself.

Additionally "weaken" and "isweak" which are

Copyright (c) 1999 Tuomas J. Lukka <lukka@iki.fi>. All rights reserved. This program is free software; you can redistribute it and/or modify it under the same terms as perl itself.

Copyright (C) 2004, 2008 Matthijs van Duin. All rights reserved. Copyright (C) 2014 cPanel Inc. All rights reserved. This program is free software; you can redistribute it and/or modify it under the same terms as Perl itself.