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Current File : /usr/local/ssl/local/ssl/local/share/man/man3/Net::Server::Proto::SSL.3pm
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.\" ========================================================================
.\"
.IX Title "Net::Server::Proto::SSL 3"
.TH Net::Server::Proto::SSL 3 "2014-05-06" "perl v5.16.3" "User Contributed Perl Documentation"
.\" For nroff, turn off justification.  Always turn off hyphenation; it makes
.\" way too many mistakes in technical documents.
.if n .ad l
.nh
.SH "NAME"
Net::Server::Proto::SSL \- Net::Server SSL protocol.
.SH "SYNOPSIS"
.IX Header "SYNOPSIS"
Until this release, it was preferrable to use the Net::Server::Proto::SSLEAY
module.  Recent versions include code that overcomes original limitations.
.PP
See Net::Server::Proto.
See Net::Server::Proto::SSLEAY.
.PP
.Vb 6
\&    use base qw(Net::Server::HTTP);
\&    main\->run(
\&        proto => \*(Aqssl\*(Aq,
\&        SSL_key_file  => "/path/to/my/file.key",
\&        SSL_cert_file => "/path/to/my/file.crt",
\&    );
\&
\&
\&    # OR
\&
\&    sub SSL_key_file  { "/path/to/my/file.key" }
\&    sub SSL_cert_file { "/path/to/my/file.crt" }
\&    main\->run(proto = \*(Aqssl\*(Aq);
\&
\&
\&    # OR
\&
\&    main\->run(
\&        port => [443, 8443, "80/tcp"],  # bind to two ssl ports and one tcp
\&        proto => "ssl",       # use ssl as the default
\&        ipv  => "*",          # bind both IPv4 and IPv6 interfaces
\&        SSL_key_file  => "/path/to/my/file.key",
\&        SSL_cert_file => "/path/to/my/file.crt",
\&    );
\&
\&
\&    # OR
\&
\&    main\->run(port => [{
\&        port  => "443",
\&        proto => "ssl",
\&        # ipv => 4, # default \- only do IPv4
\&        SSL_key_file  => "/path/to/my/file.key",
\&        SSL_cert_file => "/path/to/my/file.crt",
\&    }, {
\&        port  => "8443",
\&        proto => "ssl",
\&        ipv   => "*", # IPv4 and IPv6
\&        SSL_key_file  => "/path/to/my/file2.key", # separate key
\&        SSL_cert_file => "/path/to/my/file2.crt", # separate cert
\&
\&        SSL_foo => 1, # Any key prefixed with SSL_ passed as a port hashref
\&                      # key/value will automatically be passed to IO::Socket::SSL
\&    }]);
.Ve
.SH "DESCRIPTION"
.IX Header "DESCRIPTION"
Protocol module for Net::Server based on IO::Socket::SSL.  This module
implements a secure socket layer over tcp (also known as \s-1SSL\s0) via the
IO::Socket::SSL module.  If this module does not work in your
situation, please also consider using the \s-1SSLEAY\s0 protocol
(Net::Server::Proto::SSLEAY) which interfaces directly with
Net::SSLeay.  See Net::Server::Proto.
.PP
If you know that your server will only need IPv4 (which is the default
for Net::Server), you can load IO::Socket::SSL in inet4 mode which
will prevent it from using Socket6 and IO::Socket::INET6 since they
would represent additional and unsued overhead.
.PP
.Vb 2
\&    use IO::Socket::SSL qw(inet4);
\&    use base qw(Net::Server::Fork);
\&
\&    _\|_PACKAGE_\|_\->run(proto => "ssl");
.Ve
.SH "PARAMETERS"
.IX Header "PARAMETERS"
In addition to the normal Net::Server parameters, any of the \s-1SSL\s0
parameters from IO::Socket::SSL may also be specified.  See
IO::Socket::SSL for information on setting this up.  All arguments
prefixed with \s-1SSL_\s0 will be passed to the IO::Socket::SSL\->configure
method.
.SH "BUGS"
.IX Header "BUGS"
Until version Net::Server version 2, Net::Server::Proto::SSL used the
default IO::Socket::SSL::accept method.  This old approach introduces a
\&\s-1DDOS\s0 vulnerability into the server, where the socket is accepted, but
the parent server then has to block until the client negotiates the
\&\s-1SSL\s0 connection.  This has now been overcome by overriding the accept
method and accepting the \s-1SSL\s0 negotiation after the parent socket has
had the chance to go back to listening.
.SH "LICENCE"
.IX Header "LICENCE"
Distributed under the same terms as Net::Server
.SH "THANKS"
.IX Header "THANKS"
Thanks to Vadim for pointing out the IO::Socket::SSL accept
was returning objects blessed into the wrong class.

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