=head1 NAME Data::Entropy::RawSource::RandomnumbersInfo - download entropy from randomnumbers.info =head1 SYNOPSIS use Data::Entropy::RawSource::RandomnumbersInfo; my $rawsrc = Data::Entropy::RawSource::RandomnumbersInfo->new; $c = $rawsrc->getc; # and the rest of the I/O handle interface =head1 DESCRIPTION This class provides an I/O handle connected to a stream of random octets being generated by a quantum random number generator (from the company id Quantique) connected to the randomnumbers.info server at the University of Geneva. This is a strong source of random bits, but is not suitable for security applications because the bits are passed over the Internet unencrypted. The handle implements a substantial subset of the interface described in L. For use as a general entropy source, it is recommended to wrap an object of this class using C, which provides methods to extract entropy in more convenient forms than mere octets. The bits generated at randomnumbers.info are, theoretically and as far as anyone can tell, totally unbiased and uncorrelated. However, they are sent over the Internet in the clear, and so are subject to interception and alteration by an adversary. This is therefore generally unsuitable for security applications. Applications requiring secret entropy should generate it locally (see L). Applications requiring a large amount of apparently-random data, but not true entropy, might prefer to fake it cryptographically (see L). =cut package Data::Entropy::RawSource::RandomnumbersInfo; { use 5.006; } use warnings; use strict; use Errno 1.00 qw(EIO); use HTTP::Lite 2.2 (); our $VERSION = "0.007"; =head1 CONSTRUCTOR =over =item Data::Entropy::RawSource::RandomnumbersInfo->new Creates and returns a handle object referring to a stream of random octets generated by randomnumbers.info. =cut sub new { my($class) = @_; my $http = HTTP::Lite->new; $http->http11_mode(1); return bless({ http => $http, buffer => "", bufpos => 0, error => 0, }, $class); } =back =head1 METHODS A subset of the interfaces described in L and L are provided: =over =item $rawsrc->read(BUFFER, LENGTH[, OFFSET]) =item $rawsrc->getc =item $rawsrc->ungetc(ORD) =item $rawsrc->eof Buffered reading from the source, as in L. =item $rawsrc->sysread(BUFFER, LENGTH[, OFFSET]) Unbuffered reading from the source, as in L. =item $rawsrc->close Does nothing. =item $rawsrc->opened Retruns true to indicate that the source is available for I/O. =item $rawsrc->clearerr =item $rawsrc->error Error handling, as in L. =back The buffered (C et al) and unbuffered (C et al) sets of methods are interchangeable, because no such distinction is made by this class. Methods to write to the file are unimplemented because the stream is fundamentally read-only. Methods to seek are unimplemented because the stream is non-rewindable; C works, however. =cut sub _ensure_buffer { my($self) = @_; return 1 unless $self->{bufpos} == length($self->{buffer}); $self->{http}->reset; unless($self->{http}->request( "http://www.randomnumbers.info/cgibin/wqrng.cgi?". "amount=256&limit=255" ) == 200) { $! = EIO; return 0; } my($numbers) = ($self->{http}->body =~ /((?:[0-9]+[\ \t\n]+){255}[0-9]+)/); unless(defined $numbers) { $! = EIO; return 0; } $self->{buffer} = ""; $self->{bufpos} = 0; while($numbers =~ /([0-9]+)/g) { if($1 >= 256) { $! = EIO; return $self->{buffer} ne ""; } $self->{buffer} .= chr($1); } return 1; } sub close { 1 } sub opened { 1 } sub error { $_[0]->{error} } sub clearerr { my($self) = @_; $self->{error} = 0; return 0; } sub getc { my($self) = @_; unless($self->_ensure_buffer) { $self->{error} = 1; return undef; } return substr($self->{buffer}, $self->{bufpos}++, 1); } sub ungetc { my($self, $cval) = @_; if($self->{bufpos} == 0) { $self->{buffer} = chr($cval).$self->{buffer}; } else { $self->{bufpos}--; } } sub read { my($self, undef, $length, $offset) = @_; return undef if $length < 0; $_[1] = "" unless defined $_[1]; if(!defined($offset)) { $offset = 0; $_[1] = ""; } elsif($offset < 0) { return undef if $offset < -length($_[1]); substr $_[1], $offset, -$offset, ""; $offset = length($_[1]); } elsif($offset > length($_[1])) { $_[1] .= "\0" x ($offset - length($_[1])); } else { substr $_[1], $offset, length($_[1]) - $offset, ""; } my $original_offset = $offset; while($length != 0) { unless($self->_ensure_buffer) { $self->{error} = 1; last; } my $avail = length($self->{buffer}) - $self->{bufpos}; if($length < $avail) { $_[1] .= substr($self->{buffer}, $self->{bufpos}, $length); $offset += $length; $self->{bufpos} += $length; last; } $_[1] .= substr($self->{buffer}, $self->{bufpos}, $avail); $offset += $avail; $length -= $avail; $self->{bufpos} += $avail; } my $nread = $offset - $original_offset; return $nread == 0 ? undef : $nread; } *sysread = \&read; sub eof { 0 } =head1 SEE ALSO L, L, L, L, L =head1 AUTHOR Andrew Main (Zefram) =head1 COPYRIGHT Copyright (C) 2006, 2007, 2009, 2011 Andrew Main (Zefram) =head1 LICENSE This module is free software; you can redistribute it and/or modify it under the same terms as Perl itself. =cut 1;