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Edit: Misc.pm
package Crypt::Misc; use strict; use warnings; our $VERSION = '0.089'; require Exporter; our @ISA = qw(Exporter); ### use Exporter 5.57 'import'; use Carp 'croak'; our %EXPORT_TAGS = ( all => [qw(encode_b64 decode_b64 encode_b64u decode_b64u encode_b58b decode_b58b encode_b58f decode_b58f encode_b58r decode_b58r encode_b58t decode_b58t encode_b58s decode_b58s encode_b32r decode_b32r encode_b32b decode_b32b encode_b32z decode_b32z encode_b32c decode_b32c pem_to_der der_to_pem read_rawfile write_rawfile slow_eq is_v4uuid random_v4uuid is_uuid random_v7uuid increment_octets_be increment_octets_le )] ); our @EXPORT_OK = ( @{ $EXPORT_TAGS{'all'} } ); our @EXPORT = qw(); use CryptX; use Crypt::Digest 'digest_data'; use Crypt::Mode::CBC; use Crypt::Mode::CFB; use Crypt::Mode::ECB; use Crypt::Mode::OFB; use Crypt::Cipher; use Crypt::PRNG 'random_bytes'; use Time::HiRes (); # perl core module sub _encode_b58 { my ($bytes, $alphabet) = @_; return undef if !defined $bytes; return '' if length($bytes) == 0; # handle leading zero-bytes my $base58 = ''; if ($bytes =~ /^(\x00+)/) { $base58 = ('0' x length($1)); } $base58 .= _bin_to_radix($bytes, 58); if (defined $alphabet) { my $default = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuv"; return undef if $alphabet !~ /^[a-zA-Z0-9]{58}$/; my %map; @map{split //, $default} = split //, $alphabet; $base58 = join '', map { $map{$_} } split //, $base58; } return $base58; } sub _decode_b58 { my ($base58, $alphabet) = @_; return undef if !defined $base58; return '' if length($base58) == 0; my $default = "0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuv"; if (defined $alphabet) { return undef if $alphabet !~ /^[a-zA-Z0-9]{58}$/ || $base58 !~ /^[$alphabet]+$/; my %map; @map{split //, $alphabet} = split //, $default; $base58 = join '', map { $map{$_} } split //, $base58; } return undef if $base58 !~ /^[$default]+$/; # handle leading zeroes my $bytes = ''; if ($base58 =~ /^(0+)(.*)$/) { $base58 = $2; $bytes = ("\x00" x length($1)); } $bytes .= _radix_to_bin($base58, 58) if defined $base58 && length($base58) > 0; return $bytes; } sub decode_b58b { _decode_b58(shift, "123456789ABCDEFGHJKLMNPQRSTUVWXYZabcdefghijkmnopqrstuvwxyz") } # Bitcoin sub decode_b58f { _decode_b58(shift, "123456789abcdefghijkmnopqrstuvwxyzABCDEFGHJKLMNPQRSTUVWXYZ") } # Flickr sub decode_b58r { _decode_b58(shift, "rpshnaf39wBUDNEGHJKLM4PQRST7VWXYZ2bcdeCg65jkm8oFqi1tuvAxyz") } # Ripple sub decode_b58t { _decode_b58(shift, "RPShNAF39wBUDnEGHJKLM4pQrsT7VWXYZ2bcdeCg65jkm8ofqi1tuvaxyz") } # Tipple sub decode_b58s { _decode_b58(shift, "gsphnaf39wBUDNEGHJKLM4PQRST7VWXYZ2bcdeCr65jkm8oFqi1tuvAxyz") } # Stellar sub encode_b58b { _encode_b58(shift, "123456789ABCDEFGHJKLMNPQRSTUVWXYZabcdefghijkmnopqrstuvwxyz") } # Bitcoin sub encode_b58f { _encode_b58(shift, "123456789abcdefghijkmnopqrstuvwxyzABCDEFGHJKLMNPQRSTUVWXYZ") } # Flickr sub encode_b58r { _encode_b58(shift, "rpshnaf39wBUDNEGHJKLM4PQRST7VWXYZ2bcdeCg65jkm8oFqi1tuvAxyz") } # Ripple sub encode_b58t { _encode_b58(shift, "RPShNAF39wBUDnEGHJKLM4pQrsT7VWXYZ2bcdeCg65jkm8ofqi1tuvaxyz") } # Tipple sub encode_b58s { _encode_b58(shift, "gsphnaf39wBUDNEGHJKLM4PQRST7VWXYZ2bcdeCr65jkm8oFqi1tuvAxyz") } # Stellar sub pem_to_der { my ($data, $password) = @_; my ($begin, $obj1, $content, $end, $obj2); # first try to load KEY (e.g. EC pem files might contain more parts) ($begin, $obj1, $content, $end, $obj2) = $data =~ m/(----[- ]BEGIN ([^\r\n\-]+KEY)[ -]----)(.*?)(----[- ]END ([^\r\n\-]+)[ -]----)/s; # if failed then try to load anything ($begin, $obj1, $content, $end, $obj2) = $data =~ m/(----[- ]BEGIN ([^\r\n\-]+)[ -]----)(.*?)(----[- ]END ([^\r\n\-]+)[ -]----)/s unless defined $content; return undef unless $content; return undef if !defined($obj1) || !defined($obj2) || $obj1 ne $obj2; $content =~ s/^\s+//sg; $content =~ s/\s+$//sg; $content =~ s/\r\n/\n/sg; # CR-LF >> LF $content =~ s/\r/\n/sg; # CR >> LF $content =~ s/\\\n//sg; # \ + LF my ($headers, undef, $b64) = $content =~ /^(([^:]+:.*?\n)*)(.*)$/s; return undef unless $b64; my $binary = decode_b64($b64); return undef unless defined $binary; my ($ptype, $cipher_name, $iv_hex); for my $h (split /\n/, ($headers||'')) { my ($k, $v) = split /:\s*/, $h, 2; $ptype = $v if $k eq 'Proc-Type'; ($cipher_name, $iv_hex) = $v =~ /^\s*(.*?)\s*,\s*([0-9a-fA-F]+)\s*$/ if $k eq 'DEK-Info'; } if ($cipher_name && $iv_hex && $ptype && $ptype eq '4,ENCRYPTED') { croak "FATAL: encrypted PEM but no password provided" unless defined $password; my $iv = pack("H*", $iv_hex); my ($mode, $klen) = _name2mode($cipher_name); my $key = _password2key($password, $klen, $iv, 'MD5'); return $mode->decrypt($binary, $key, $iv); } return $binary; } sub der_to_pem { my ($data, $header_name, $password, $cipher_name) = @_; croak "FATAL: der_to_pem invalid header name" unless defined $header_name && $header_name =~ /^[0-9A-Za-z ]+$/; my $content = $data; my @headers; if (defined $password) { $cipher_name ||= 'AES-256-CBC'; my ($mode, $klen, $ilen) = _name2mode($cipher_name); my $iv = random_bytes($ilen); my $key = _password2key($password, $klen, $iv, 'MD5'); $content = $mode->encrypt($data, $key, $iv); push @headers, 'Proc-Type: 4,ENCRYPTED', "DEK-Info: ".uc($cipher_name).",".unpack("H*", $iv); } my $pem = "-----BEGIN $header_name-----\n"; if (@headers) { $pem .= "$_\n" for @headers; $pem .= "\n"; } my @l = encode_b64($content) =~ /.{1,64}/g; $pem .= join("\n", @l) . "\n"; $pem .= "-----END $header_name-----\n"; return $pem; } sub read_rawfile { # $data = read_rawfile($filename); my $f = shift; croak "FATAL: read_rawfile() non-existing file '$f'" unless -f $f; open my $fh, "<", $f or croak "FATAL: read_rawfile() cannot open file '$f': $!"; binmode $fh; return do { local $/; <$fh> }; } sub write_rawfile { # write_rawfile($filename, $data); croak "FATAL: write_rawfile() no data" unless defined $_[1]; open my $fh, ">", $_[0] or croak "FATAL: write_rawfile() cannot open file '$_[0]': $!"; binmode $fh; print $fh $_[1] or croak "FATAL: write_rawfile() cannot write to '$_[0]': $!"; close $fh or croak "FATAL: write_rawfile() cannot close '$_[0]': $!"; return; } ### slow_eq() is implemented in XS (CryptX.xs) using libtomcrypt's mem_neq() sub random_v4uuid() { # Version 4 - random - UUID: xxxxxxxx-xxxx-4xxx-Yxxx-xxxxxxxxxxxx # where x is any hexadecimal digit and Y is one of 8, 9, A, B (1000, 1001, 1010, 1011) # e.g. f47ac10b-58cc-4372-a567-0e02b2c3d479 my $raw = random_bytes(16); # xxxxxxxxxxxx4xxxYxxxxxxxxxxxxxxx $raw &= pack("H*", "FFFFFFFFFFFF0FFFFFFFFFFFFFFFFFFF"); $raw |= pack("H*", "00000000000040000000000000000000"); $raw &= pack("H*", "FFFFFFFFFFFFFFFF3FFFFFFFFFFFFFFF"); # 0x3 == 0011b $raw |= pack("H*", "00000000000000008000000000000000"); # 0x8 == 1000b my $hex = unpack("H*", $raw); $hex =~ s/^(.{8})(.{4})(.{4})(.{4})(.{12}).*$/$1-$2-$3-$4-$5/; return $hex; } sub random_v7uuid() { # RFC 9562 ยง5.7 - Version 7 UUID (time-ordered) # Format: xxxxxxxx-xxxx-7xxx-[89ab]xxx-xxxxxxxxxxxx # Structure: 48-bit ms timestamp | 4-bit ver=7 | 12-bit rand | 2-bit var=10 | 62-bit rand my ($sec, $usec) = Time::HiRes::gettimeofday(); my $ms = $sec * 1000 + int($usec / 1000); my $rand = random_bytes(10); my $raw = pack("N", int($ms / 65536)) . # bytes 0-3: ms[47:16] pack("n", $ms % 65536) . # bytes 4-5: ms[15:0] pack("n", 0x7000 | (unpack("n", substr($rand, 0, 2)) & 0x0FFF)) . # bytes 6-7: ver=7 + rand_a pack("C", 0x80 | (unpack("C", substr($rand, 2, 1)) & 0x3F)) . # byte 8: var=10 + rand_b substr($rand, 3, 7); # bytes 9-15: rand_b (cont.) my $hex = unpack("H*", $raw); $hex =~ s/^(.{8})(.{4})(.{4})(.{4})(.{12})$/$1-$2-$3-$4-$5/; return $hex; } sub is_v4uuid($) { my $uuid = shift; return 0 if !$uuid; return 1 if $uuid =~ /^[0-9a-f]{8}-[0-9a-f]{4}-4[0-9a-f]{3}-[089ab][0-9a-f]{3}-[0-9a-f]{12}$/i; return 0; } sub is_uuid($) { my $uuid = shift; return 0 if !$uuid; return 1 if $uuid =~ /^[0-9a-f]{8}-[0-9a-f]{4}-[0-9a-f]{4}-[089ab][0-9a-f]{3}-[0-9a-f]{12}$/i; return 0; } ### private functions sub _name2mode { my $cipher_name = uc(shift); my %trans = ( 'DES-EDE3' => 'DES_EDE' ); my ($cipher, undef, $klen, $mode) = $cipher_name =~ /^(AES|CAMELLIA|DES|DES-EDE3|SEED)(-(\d+))?-(CBC|CFB|ECB|OFB)$/i; croak "FATAL: unsupported cipher '$cipher_name'" unless $cipher && $mode; $cipher = $trans{$cipher} || $cipher; $klen = 192 if $cipher eq 'DES_EDE'; $klen = 64 if $cipher eq 'DES'; $klen = 128 if $cipher eq 'SEED'; $klen = $klen ? int($klen/8) : Crypt::Cipher::min_keysize($cipher); my $ilen = Crypt::Cipher::blocksize($cipher); croak "FATAL: unsupported cipher '$cipher_name'" unless $klen && $ilen; return (Crypt::Mode::CBC->new($cipher), $klen, $ilen) if $mode eq 'CBC'; return (Crypt::Mode::CFB->new($cipher), $klen, $ilen) if $mode eq 'CFB'; return (Crypt::Mode::ECB->new($cipher), $klen, $ilen) if $mode eq 'ECB'; return (Crypt::Mode::OFB->new($cipher), $klen, $ilen) if $mode eq 'OFB'; } sub _password2key { my ($password, $klen, $iv, $hash) = @_; my $salt = substr($iv, 0, 8); my $key = ''; while (length($key) < $klen) { $key .= digest_data($hash, $key . $password . $salt); } return substr($key, 0, $klen); } 1; =pod =head1 NAME Crypt::Misc - miscellaneous functions related to (or used by) CryptX =head1 SYNOPSIS use Crypt::Misc ':all'; my $rawbytes = 'hello world'; my $filename = 'sample.bin'; my $pem_data = "-----BEGIN PUBLIC KEY-----\n...\n-----END PUBLIC KEY-----\n"; my $str1 = 'same'; my $str2 = 'same'; # Base64 and Base64 URL-safe functions my $base64 = encode_b64($rawbytes); my $rawbytes2 = decode_b64($base64); my $base64url = encode_b64u($rawbytes); my $rawbytes3 = decode_b64u($base64url); # read/write file my $rawdata = read_rawfile($filename); write_rawfile($filename, $rawdata); # convert PEM/DER my $der_data = pem_to_der($pem_data); my $pem_data2 = der_to_pem($der_data, "PUBLIC KEY"); # others die "mismatch" unless slow_eq($str1, $str2); =head1 DESCRIPTION This module contains a collection of helper functions related to CryptX, but it does not implement cryptography itself. Most of them are also available in other Perl modules. If you already use CryptX, these helpers can reduce extra dependencies. =head1 EXPORT Nothing is exported by default. You can export selected functions: use Crypt::Misc qw(read_rawfile write_rawfile slow_eq); Or all of them at once: use Crypt::Misc ':all'; =head1 FUNCTIONS All encoding functions (C<encode_b64>, C<encode_b58b>, etc.) accept a binary string and return an ASCII string. All decoding functions (C<decode_b64>, C<decode_b58b>, etc.) accept an ASCII string and return a binary string, or C<undef> if the input is malformed. An empty string is considered valid input and decodes to an empty string. C<undef> is considered invalid input and results in C<undef>. Non-empty input with no actual payload, such as whitespace-only or padding-only input, is also considered malformed and results in C<undef>. The Base64 decoders C<decode_b64> and C<decode_b64u> also accept otherwise valid payload with embedded whitespace. The other decoder families in this module do not; for them, embedded whitespace is treated as malformed input. =head2 read_rawfile I<Since: CryptX-0.029> $rawdata = read_rawfile($filename); Reads file C<$filename> into a scalar as binary data, without decoding or transformation. =head2 write_rawfile I<Since: CryptX-0.029> write_rawfile($filename, $rawdata); Writes C<$rawdata> to file C<$filename> as binary data. =head2 slow_eq I<Since: CryptX-0.029> if (slow_eq($data1, $data2)) { ... } Compares two strings in constant time to reduce timing side channels. Returns C<1> if the strings are equal, C<0> if they differ, or C<undef> if either argument is C<undef>. =head2 pem_to_der I<Since: CryptX-0.029> $der_data = pem_to_der($pem_data); #or $der_data = pem_to_der($pem_data, $password); Converts PEM to DER. Also supports password-protected PEM data. Returns C<undef> if C<$pem_data> cannot be parsed (no valid PEM block found) or if the C<BEGIN> / C<END> labels do not match. Croaks if the PEM is encrypted but no C<$password> is provided. If an encrypted PEM is supplied with the wrong password, decryption is expected to croak from the underlying cipher/padding layer. =head2 der_to_pem I<Since: CryptX-0.029> $pem_data = der_to_pem($der_data, $header_name); #or $pem_data = der_to_pem($der_data, $header_name, $password); #or $pem_data = der_to_pem($der_data, $header_name, $password, $cipher_name); # $header_name e.g. "PUBLIC KEY", "RSA PRIVATE KEY" ... # $cipher_name e.g. "DES-EDE3-CBC", "AES-256-CBC" (DEFAULT) ... Converts DER to PEM. Returns an ASCII PEM string. Also supports password-protected PEM data. Any defined C<$password>, including false-like values like C<''> or C<'0'>, enables PEM encryption. B<Security note>: do not use ECB-based ciphers (e.g. C<AES-256-ECB>) for PEM encryption - ECB encrypts each block independently, leaking plaintext structure. Use the default C<AES-256-CBC> or another chaining mode (CBC, CFB, OFB). B<Security note>: the traditional PEM encryption format uses a single-iteration MD5-based key derivation which is weak against brute-force. For new applications, prefer PKCS#8 encrypted keys (e.g. via L<Crypt::PK::RSA/export_key_pem>) or an independent encryption layer. =head2 random_v4uuid I<Since: CryptX-0.031> my $uuid = random_v4uuid(); Returns a cryptographically strong version 4 random UUID: C<xxxxxxxx-xxxx-4xxx-Yxxx-xxxxxxxxxxxx> where C<x> is any hexadecimal digit and C<Y> is one of 8, 9, A, B (1000, 1001, 1010, 1011) e.g. C<f47ac10b-58cc-4372-a567-0e02b2c3d479>. =head2 is_v4uuid I<Since: CryptX-0.031> if (is_v4uuid($uuid)) { ... } Checks whether the given C<$uuid> string matches version 4 UUID format with a relaxed variant policy. The variant nibble may be one of C<0>, C<8>, C<9>, C<A>, or C<B>. Returns C<0> (mismatch) or C<1> (match). =head2 random_v7uuid I<Since: CryptX-0.088> my $uuid = random_v7uuid(); Returns a cryptographically strong version 7 time-ordered UUID: C<xxxxxxxx-xxxx-7xxx-Yxxx-xxxxxxxxxxxx> where the first 48 bits encode the current Unix time in milliseconds (making UUIDs sortable by generation time), followed by random bits. Ordering is therefore coarse at millisecond granularity only; UUIDs generated within the same millisecond are not guaranteed to be lexicographically monotonic. C<Y> is one of 8, 9, A, B (RFC 9562 variant). =head2 is_uuid I<Since: CryptX-0.088> if (is_uuid($uuid)) { ... } Checks whether C<$uuid> is a validly formatted UUID (any version) in the standard C<xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx> form with a relaxed variant policy. The variant nibble may be one of C<0>, C<8>, C<9>, C<A>, or C<B>. Returns C<1> (match) or C<0> (mismatch). For a version-specific check see L</is_v4uuid>. =head2 increment_octets_le I<Since: CryptX-0.048> $octets = increment_octets_le($octets); Treats C<$octets> as a little-endian big number and returns the incremented value. =head2 increment_octets_be I<Since: CryptX-0.048> $octets = increment_octets_be($octets); Treats C<$octets> as a big-endian big number and returns the incremented value. =head2 encode_b64 I<Since: CryptX-0.029> $base64string = encode_b64($rawdata); Encodes C<$rawdata> as a Base64 string. No line endings are added. =head2 decode_b64 I<Since: CryptX-0.029> $rawdata = decode_b64($base64string); Decodes a Base64 string. =head2 encode_b64u I<Since: CryptX-0.029> $base64url_string = encode_b64u($rawdata); Encodes C<$rawdata> as a Base64 URL-safe string. No line endings are added. =head2 decode_b64u I<Since: CryptX-0.029> $rawdata = decode_b64u($base64url_string); Decodes a Base64 URL-safe string. =head2 encode_b32r I<Since: CryptX-0.049> $string = encode_b32r($rawdata); Encode bytes into Base32 (rfc4648 alphabet) string, without "=" padding. =head2 decode_b32r I<Since: CryptX-0.049> $rawdata = decode_b32r($string); Decode a Base32 (rfc4648 alphabet) string into bytes. =head2 encode_b32b I<Since: CryptX-0.049> $string = encode_b32b($rawdata); Encode bytes into Base32 (base32hex alphabet) string, without "=" padding. =head2 decode_b32b I<Since: CryptX-0.049> $rawdata = decode_b32b($string); Decode a Base32 (base32hex alphabet) string into bytes. =head2 encode_b32z I<Since: CryptX-0.049> $string = encode_b32z($rawdata); Encode bytes into Base32 (zbase32 alphabet) string. =head2 decode_b32z I<Since: CryptX-0.049> $rawdata = decode_b32z($string); Decode a Base32 (zbase32 alphabet) string into bytes. =head2 encode_b32c I<Since: CryptX-0.049> $string = encode_b32c($rawdata); Encode bytes into Base32 (crockford alphabet) string. =head2 decode_b32c I<Since: CryptX-0.049> $rawdata = decode_b32c($string); Decode a Base32 (crockford alphabet) string into bytes. =head2 encode_b58b I<Since: CryptX-0.049> $string = encode_b58b($rawdata); Encode bytes into Base58 (Bitcoin alphabet) string. =head2 decode_b58b I<Since: CryptX-0.049> $rawdata = decode_b58b($string); Decode a Base58 (Bitcoin alphabet) string into bytes. =head2 encode_b58f I<Since: CryptX-0.049> $string = encode_b58f($rawdata); Encode bytes into Base58 (Flickr alphabet) string. =head2 decode_b58f I<Since: CryptX-0.049> $rawdata = decode_b58f($string); Decode a Base58 (Flickr alphabet) string into bytes. =head2 encode_b58r I<Since: CryptX-0.049> $string = encode_b58r($rawdata); Encode bytes into Base58 (Ripple alphabet) string. =head2 decode_b58r I<Since: CryptX-0.049> $rawdata = decode_b58r($string); Decode a Base58 (Ripple alphabet) string into bytes. =head2 encode_b58t I<Since: CryptX-0.049> $string = encode_b58t($rawdata); Encode bytes into Base58 (Tipple alphabet) string. =head2 decode_b58t I<Since: CryptX-0.049> $rawdata = decode_b58t($string); Decode a Base58 (Tipple alphabet) string into bytes. =head2 encode_b58s I<Since: CryptX-0.049> $string = encode_b58s($rawdata); Encode bytes into Base58 (Stellar alphabet) string. =head2 decode_b58s I<Since: CryptX-0.049> $rawdata = decode_b58s($string); Decode a Base58 (Stellar alphabet) string into bytes. =head1 SEE ALSO =over =item * L<CryptX> =back =cut