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Crypt::OpenSSL::RSA - RSA encoding and decoding, using the openSSL libraries |
Crypt::OpenSSL::RSA - RSA encoding and decoding, using the openSSL libraries
Crypt::OpenSSL::Random - Routines for accessing the OpenSSL pseudo-random number generator
use Crypt::OpenSSL::Random;
Crypt::OpenSSL::Random::random_seed($good_random_data);
Crypt::OpenSSL::Random::random_egd("/tmp/entropy");
Crypt::OpenSSL::Random::random_status() or
die "Unable to sufficiently seed the random number generator".
my $ten_good_random_bytes = Crypt::OpenSSL::Random::random_bytes(10); my $ten_ok_random_bytes = Crypt::OpenSSL::Random::random_pseudo_bytes(10);
Crypt::OpenSSL::Random provides the ability to seed and query the OpenSSL library's pseudo-random number generator
None by default.
Because of the internal workings of OpenSSL's random library, the pseudo-random number generator (PRNG) accessed by Crypt::OpenSSL::Random will be different than the one accessed by any other perl module. Hence, to use a module such as Crypt::OpenSSL::Random, you will need to seed the PRNG used there from one used here. This class is still advantageous, however, as it centralizes other methods, such as random_egd, in one place.
Ian Robertson, iroberts@cpan.com
perl(1), rand(3), RAND_add(3), RAND_egd(3), RAND_bytes(3).
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Crypt::OpenSSL::RSA - RSA encoding and decoding, using the openSSL libraries |