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package Net::DNS::RR::DS; # # $Id: DS.pm 1456 2016-02-17 13:34:00Z willem $ # use vars qw($VERSION); $VERSION = (qw$LastChangedRevision: 1456 $)[1]; use strict; use base qw(Net::DNS::RR); =head1 NAME Net::DNS::RR::DS - DNS DS resource record =cut use integer; use Carp; use constant BABBLE => defined eval 'require Digest::BubbleBabble'; eval 'require Digest::SHA'; ## optional for simple Net::DNS RR eval 'require Digest::GOST'; eval 'require Digest::GOST::CryptoPro'; my %digest = ( '1' => ['Digest::SHA', 1], '2' => ['Digest::SHA', 256], '3' => ['Digest::GOST::CryptoPro'], '4' => ['Digest::SHA', 384], ); # # source: http://www.iana.org/assignments/dns-sec-alg-numbers # { my @algbyname = ( ## Reserved => 0, # [RFC4034][RFC4398] 'RSAMD5' => 1, # [RFC3110][RFC4034] 'DH' => 2, # [RFC2539] 'DSA' => 3, # [RFC3755][RFC2536] ## Reserved => 4, # [RFC6725] 'RSASHA1' => 5, # [RFC3110][RFC4034] 'DSA-NSEC3-SHA1' => 6, # [RFC5155] 'RSASHA1-NSEC3-SHA1' => 7, # [RFC5155] 'RSASHA256' => 8, # [RFC5702] ## Reserved => 9, # [RFC6725] 'RSASHA512' => 10, # [RFC5702] ## Reserved => 11, # [RFC6725] 'ECC-GOST' => 12, # [RFC5933] 'ECDSAP256SHA256' => 13, # [RFC6605] 'ECDSAP384SHA384' => 14, # [RFC6605] 'INDIRECT' => 252, # [RFC4034] 'PRIVATEDNS' => 253, # [RFC4034] 'PRIVATEOID' => 254, # [RFC4034] ## Reserved => 255, # [RFC4034] ); my %algbyval = reverse @algbyname; my $map = sub { my $arg = shift; return $arg if $arg =~ /^\d/; $arg =~ s/[^A-Za-z0-9]//g; # strip non-alphanumerics uc($arg); }; my @pairedval = sort ( 1 .. 254, 1 .. 254 ); # also accept number my %algbyname = map &$map($_), @algbyname, @pairedval; sub _algbyname { my $name = shift; my $key = uc $name; # synthetic key $key =~ s/[^A-Z0-9]//g; # strip non-alphanumerics $algbyname{$key} || croak "unknown algorithm $name"; } sub _algbyval { my $value = shift; $algbyval{$value} || return $value; } } # # source: http://www.iana.org/assignments/ds-rr-types # { my @digestbyname = ( 'SHA-1' => 1, # RFC3658 'SHA-256' => 2, # RFC4509 'GOST' => 3, # RFC5933 'SHA-384' => 4, # RFC6605 ); my @digestbyalias = ( 'SHA' => 1 ); my %digestbyval = reverse @digestbyname; my $map = sub { my $arg = shift; unless ( $digestbyval{$arg} ) { $arg =~ s/[^A-Za-z0-9]//g; # synthetic key return uc $arg; } my @map = ( $arg, "$arg" => $arg ); # also accept number }; my %digestbyname = map &$map($_), @digestbyalias, @digestbyname; sub _digestbyname { my $name = shift; my $key = uc $name; # synthetic key $key =~ s /[^A-Z0-9]//g; # strip non-alphanumerics $digestbyname{$key} || croak "unknown digest type $name"; } sub _digestbyval { my $value = shift; $digestbyval{$value} || return $value; } } sub _decode_rdata { ## decode rdata from wire-format octet string my $self = shift; my ( $data, $offset ) = @_; my $length = $self->{rdlength} - 4; @{$self}{qw(keytag algorithm digtype digestbin)} = unpack "\@$offset n C2 a$length", $$data; } sub _encode_rdata { ## encode rdata as wire-format octet string my $self = shift; return '' unless defined $self->{digestbin}; pack 'n C2 a*', @{$self}{qw(keytag algorithm digtype digestbin)}; } sub _format_rdata { ## format rdata portion of RR string. my $self = shift; return '' unless defined $self->{digestbin}; my @babble = BABBLE ? ( join '', ';', $self->babble, "\n" ) : (); my @digest = split /(\S{64})/, $self->digest; my @rdata = ( @{$self}{qw(keytag algorithm digtype)}, @digest, @babble ); } sub _parse_rdata { ## populate RR from rdata in argument list my $self = shift; foreach (qw(keytag algorithm digtype)) { $self->$_(shift) } $self->digest(@_); } sub keytag { my $self = shift; $self->{keytag} = 0 + shift if scalar @_; $self->{keytag} || 0; } sub algorithm { my ( $self, $arg ) = @_; unless ( ref($self) ) { ## class method or simple function my $argn = pop; return $argn =~ /[^0-9]/ ? _algbyname($argn) : _algbyval($argn); } return $self->{algorithm} unless defined $arg; return _algbyval( $self->{algorithm} ) if $arg =~ /MNEMONIC/i; return $self->{algorithm} = _algbyname($arg); } sub digtype { my ( $self, $arg ) = @_; unless ( ref($self) ) { ## class method or simple function my $argn = pop; return $argn =~ /[^0-9]/ ? _digestbyname($argn) : _digestbyval($argn); } return $self->{digtype} unless defined $arg; return _digestbyval( $self->{digtype} ) if $arg =~ /MNEMONIC/i; return $self->{digtype} = _digestbyname($arg); } sub digest { my $self = shift; $self->digestbin( pack "H*", map { die "!hex!" if m/[^0-9A-Fa-f]/; $_ } join "", @_ ) if scalar @_; unpack "H*", $self->digestbin() if defined wantarray; } sub digestbin { my $self = shift; $self->{digestbin} = shift if scalar @_; $self->{digestbin} || ""; } sub babble { return BABBLE ? Digest::BubbleBabble::bubblebabble( Digest => shift->digestbin ) : ''; } sub create { my $class = shift; my $keyrr = shift; my %args = $keyrr->ttl ? ( ttl => $keyrr->ttl, @_ ) : (@_); my ($type) = reverse split '::', $class; my $kname = $keyrr->name; my $flags = $keyrr->flags; croak "Unable to create $kname $type record for non-DNSSEC key" unless $keyrr->protocol == 3; croak "Unable to create $kname $type record for non-authentication key" if $flags & 0x8000; croak "Unable to create $kname $type record for non-ZONE key" unless ( $flags & 0x300 ) == 0x100; my $self = new Net::DNS::RR( name => $kname, # per definition, same as keyrr type => $type, class => $keyrr->class, keytag => $keyrr->keytag, algorithm => $keyrr->algorithm, digtype => 1, # SHA1 by default %args ); my $owner = $self->{owner}->encode(); my $data = pack 'a* a*', $owner, $keyrr->_encode_rdata; my $arglist = $digest{$self->digtype}; my ( $object, @argument ) = @$arglist; my $hash = $object->new(@argument); $hash->add($data); $self->digestbin( $hash->digest ); return $self; } sub verify { my ( $self, $key ) = @_; my $verify = create Net::DNS::RR::DS( $key, ( digtype => $self->digtype ) ); return $verify->digestbin eq $self->digestbin; } 1; __END__ =head1 SYNOPSIS use Net::DNS; $rr = new Net::DNS::RR('name DS keytag algorithm digtype digest'); use Net::DNS::SEC; $ds = create Net::DNS::RR::DS( $dnskeyrr, digtype => 'SHA256', ttl => 3600 ); =head1 DESCRIPTION Class for DNS Delegation Signer (DS) resource record. =head1 METHODS The available methods are those inherited from the base class augmented by the type-specific methods defined in this package. Use of undocumented package features or direct access to internal data structures is discouraged and could result in program termination or other unpredictable behaviour. =head2 keytag $keytag = $rr->keytag; $rr->keytag( $keytag ); The 16-bit numerical key tag of the key. (RFC2535 4.1.6) =head2 algorithm $algorithm = $rr->algorithm; $rr->algorithm( $algorithm ); Decimal representation of the 8-bit algorithm field. algorithm() may also be invoked as a class method or simple function to perform mnemonic and numeric code translation. =head2 digtype $digtype = $rr->digtype; $rr->digtype( $digtype ); Decimal representation of the 8-bit digest type field. digtype() may also be invoked as a class method or simple function to perform mnemonic and numeric code translation. =head2 digest $digest = $rr->digest; $rr->digest( $digest ); Hexadecimal representation of the digest over the label and key. =head2 digestbin $digestbin = $rr->digestbin; $rr->digestbin( $digestbin ); Binary representation of the digest over the label and key. =head2 babble print $rr->babble; The babble() method returns the 'BubbleBabble' representation of the digest if the Digest::BubbleBabble package is available, otherwise an empty string is returned. BubbleBabble represents a message digest as a string of plausible words, to make the digest easier to verify. The "words" are not necessarily real words, but they look more like words than a string of hex characters. The 'BubbleBabble' string is appended as a comment to the RDATA when the string method is called. =head2 create use Net::DNS::SEC; $dsrr = create Net::DNS::RR::DS($keyrr, digtype => 'SHA-256' ); $keyrr->print; $dsrr->print; This constructor takes a key object as argument and will return the corresponding DS RR object. The digest type defaults to SHA-1. =head2 verify $verify = $dsrr->verify($keyrr); The boolean verify method will return true if the hash over the key RR provided as the argument conforms to the data in the DS itself i.e. the DS points to the DNSKEY from the argument. =head1 COPYRIGHT Copyright (c)2001-2005 RIPE NCC. Author Olaf M. Kolkman Portions Copyright (c)2013 Dick Franks. All rights reserved. Package template (c)2009,2012 O.M.Kolkman and R.W.Franks. =head1 LICENSE Permission to use, copy, modify, and distribute this software and its documentation for any purpose and without fee is hereby granted, provided that the above copyright notice appear in all copies and that both that copyright notice and this permission notice appear in supporting documentation, and that the name of the author not be used in advertising or publicity pertaining to distribution of the software without specific prior written permission. THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. =head1 SEE ALSO L<perl>, L<Net::DNS>, L<Net::DNS::RR>, RFC4034, RFC3658 L<Algorithm Numbers|http://www.iana.org/assignments/dns-sec-alg-numbers>, L<Digest Types|http://www.iana.org/assignments/ds-rr-types> =cut