mirror of
https://github.com/zeromq/libzmq.git
synced 2025-03-11 00:16:11 +00:00
495 lines
14 KiB
C++
495 lines
14 KiB
C++
/*
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Copyright (c) 2007-2016 Contributors as noted in the AUTHORS file
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This file is part of libzmq, the ZeroMQ core engine in C++.
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libzmq is free software; you can redistribute it and/or modify it under
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the terms of the GNU Lesser General Public License (LGPL) as published
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by the Free Software Foundation; either version 3 of the License, or
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(at your option) any later version.
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As a special exception, the Contributors give you permission to link
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this library with independent modules to produce an executable,
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regardless of the license terms of these independent modules, and to
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copy and distribute the resulting executable under terms of your choice,
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provided that you also meet, for each linked independent module, the
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terms and conditions of the license of that module. An independent
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module is a module which is not derived from or based on this library.
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If you modify this library, you must extend this exception to your
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version of the library.
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libzmq is distributed in the hope that it will be useful, but WITHOUT
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ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public
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License for more details.
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You should have received a copy of the GNU Lesser General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>.
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*/
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#include "precompiled.hpp"
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#if !defined ZMQ_HAVE_WINDOWS
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#include <sys/types.h>
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#include <unistd.h>
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#include <sys/socket.h>
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#include <netinet/in.h>
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#include <arpa/inet.h>
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#ifdef ZMQ_HAVE_VXWORKS
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#include <sockLib.h>
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#endif
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#endif
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#include "udp_engine.hpp"
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#include "session_base.hpp"
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#include "v2_protocol.hpp"
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#include "err.hpp"
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#include "ip.hpp"
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// OSX uses a different name for this socket option
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#ifndef IPV6_ADD_MEMBERSHIP
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#define IPV6_ADD_MEMBERSHIP IPV6_JOIN_GROUP
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#endif
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zmq::udp_engine_t::udp_engine_t (const options_t &options_) :
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plugged (false),
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fd (-1),
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session (NULL),
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handle ((handle_t) NULL),
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address (NULL),
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options (options_),
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send_enabled (false),
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recv_enabled (false)
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{
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}
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zmq::udp_engine_t::~udp_engine_t ()
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{
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zmq_assert (!plugged);
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if (fd != retired_fd) {
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#ifdef ZMQ_HAVE_WINDOWS
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int rc = closesocket (fd);
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wsa_assert (rc != SOCKET_ERROR);
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#else
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int rc = close (fd);
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errno_assert (rc == 0);
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#endif
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fd = retired_fd;
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}
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}
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int zmq::udp_engine_t::init (address_t *address_, bool send_, bool recv_)
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{
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zmq_assert (address_);
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zmq_assert (send_ || recv_);
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send_enabled = send_;
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recv_enabled = recv_;
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address = address_;
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fd = open_socket (address->resolved.udp_addr->family (), SOCK_DGRAM,
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IPPROTO_UDP);
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if (fd == retired_fd)
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return -1;
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unblock_socket (fd);
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return 0;
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}
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void zmq::udp_engine_t::plug (io_thread_t *io_thread_, session_base_t *session_)
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{
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zmq_assert (!plugged);
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plugged = true;
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zmq_assert (!session);
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zmq_assert (session_);
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session = session_;
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// Connect to I/O threads poller object.
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io_object_t::plug (io_thread_);
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handle = add_fd (fd);
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// Bind the socket to a device if applicable
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if (!options.bound_device.empty ())
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bind_to_device (fd, options.bound_device);
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if (send_enabled) {
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if (!options.raw_socket) {
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const ip_addr_t *out = address->resolved.udp_addr->target_addr ();
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out_address = out->as_sockaddr ();
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out_addrlen = out->sockaddr_len ();
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if (out->is_multicast ()) {
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int level;
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int optname;
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if (out->family () == AF_INET6) {
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level = IPPROTO_IPV6;
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optname = IPV6_MULTICAST_LOOP;
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} else {
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level = IPPROTO_IP;
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optname = IP_MULTICAST_LOOP;
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}
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int loop = options.multicast_loop;
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int rc = setsockopt (fd, level, optname, (char *) &loop,
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sizeof (loop));
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#ifdef ZMQ_HAVE_WINDOWS
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wsa_assert (rc != SOCKET_ERROR);
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#else
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errno_assert (rc == 0);
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#endif
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}
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} else {
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/// XXX fixme ?
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out_address = (sockaddr *) &raw_address;
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out_addrlen = sizeof (sockaddr_in);
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}
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set_pollout (handle);
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}
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if (recv_enabled) {
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int on = 1;
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int rc =
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setsockopt (fd, SOL_SOCKET, SO_REUSEADDR, (char *) &on, sizeof (on));
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#ifdef ZMQ_HAVE_WINDOWS
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wsa_assert (rc != SOCKET_ERROR);
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#else
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errno_assert (rc == 0);
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#endif
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const ip_addr_t *bind_addr = address->resolved.udp_addr->bind_addr ();
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ip_addr_t any = ip_addr_t::any (bind_addr->family ());
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const ip_addr_t *real_bind_addr;
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bool multicast = address->resolved.udp_addr->is_mcast ();
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if (multicast) {
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// In multicast we should bind ANY and use the mreq struct to
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// specify the interface
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any.set_port (bind_addr->port ());
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real_bind_addr = &any;
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} else {
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real_bind_addr = bind_addr;
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}
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#ifdef ZMQ_HAVE_VXWORKS
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rc = bind (fd, (sockaddr *) real_bind_addr->as_sockaddr (),
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real_bind_addr->sockaddr_len ());
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#else
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rc = bind (fd, real_bind_addr->as_sockaddr (),
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real_bind_addr->sockaddr_len ());
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#endif
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#ifdef ZMQ_HAVE_WINDOWS
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wsa_assert (rc != SOCKET_ERROR);
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#else
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errno_assert (rc == 0);
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#endif
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if (multicast) {
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const ip_addr_t *mcast_addr =
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address->resolved.udp_addr->target_addr ();
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if (mcast_addr->family () == AF_INET) {
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struct ip_mreq mreq;
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mreq.imr_multiaddr = mcast_addr->ipv4.sin_addr;
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mreq.imr_interface = bind_addr->ipv4.sin_addr;
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rc = setsockopt (fd, IPPROTO_IP, IP_ADD_MEMBERSHIP,
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(char *) &mreq, sizeof (mreq));
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errno_assert (rc == 0);
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} else if (mcast_addr->family () == AF_INET6) {
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struct ipv6_mreq mreq;
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int iface = address->resolved.udp_addr->bind_if ();
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zmq_assert (iface >= -1);
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mreq.ipv6mr_multiaddr = mcast_addr->ipv6.sin6_addr;
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mreq.ipv6mr_interface = iface;
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rc = setsockopt (fd, IPPROTO_IPV6, IPV6_ADD_MEMBERSHIP,
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(char *) &mreq, sizeof (mreq));
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errno_assert (rc == 0);
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} else {
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// Shouldn't happen
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abort ();
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}
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#ifdef ZMQ_HAVE_WINDOWS
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wsa_assert (rc != SOCKET_ERROR);
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#else
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errno_assert (rc == 0);
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#endif
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}
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set_pollin (handle);
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// Call restart output to drop all join/leave commands
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restart_output ();
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}
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}
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void zmq::udp_engine_t::terminate ()
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{
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zmq_assert (plugged);
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plugged = false;
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rm_fd (handle);
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// Disconnect from I/O threads poller object.
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io_object_t::unplug ();
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delete this;
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}
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void zmq::udp_engine_t::sockaddr_to_msg (zmq::msg_t *msg, sockaddr_in *addr)
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{
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char *name = inet_ntoa (addr->sin_addr);
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char port[6];
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sprintf (port, "%d", (int) ntohs (addr->sin_port));
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int size =
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(int) strlen (name) + (int) strlen (port) + 1 + 1; // Colon + NULL
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int rc = msg->init_size (size);
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errno_assert (rc == 0);
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msg->set_flags (msg_t::more);
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char *address = (char *) msg->data ();
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strcpy (address, name);
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strcat (address, ":");
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strcat (address, port);
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}
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int zmq::udp_engine_t::resolve_raw_address (char *name_, size_t length_)
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{
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memset (&raw_address, 0, sizeof raw_address);
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const char *delimiter = NULL;
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// Find delimiter, cannot use memrchr as it is not supported on windows
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if (length_ != 0) {
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int chars_left = (int) length_;
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char *current_char = name_ + length_;
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do {
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if (*(--current_char) == ':') {
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delimiter = current_char;
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break;
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}
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} while (--chars_left != 0);
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}
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if (!delimiter) {
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errno = EINVAL;
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return -1;
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}
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std::string addr_str (name_, delimiter - name_);
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std::string port_str (delimiter + 1, name_ + length_ - delimiter - 1);
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// Parse the port number (0 is not a valid port).
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uint16_t port = (uint16_t) atoi (port_str.c_str ());
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if (port == 0) {
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errno = EINVAL;
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return -1;
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}
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raw_address.sin_family = AF_INET;
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raw_address.sin_port = htons (port);
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raw_address.sin_addr.s_addr = inet_addr (addr_str.c_str ());
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if (raw_address.sin_addr.s_addr == INADDR_NONE) {
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errno = EINVAL;
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return -1;
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}
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return 0;
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}
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void zmq::udp_engine_t::out_event ()
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{
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msg_t group_msg;
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int rc = session->pull_msg (&group_msg);
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errno_assert (rc == 0 || (rc == -1 && errno == EAGAIN));
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if (rc == 0) {
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msg_t body_msg;
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rc = session->pull_msg (&body_msg);
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size_t group_size = group_msg.size ();
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size_t body_size = body_msg.size ();
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size_t size;
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if (options.raw_socket) {
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rc = resolve_raw_address ((char *) group_msg.data (), group_size);
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// We discard the message if address is not valid
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if (rc != 0) {
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rc = group_msg.close ();
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errno_assert (rc == 0);
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body_msg.close ();
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errno_assert (rc == 0);
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return;
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}
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size = body_size;
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memcpy (out_buffer, body_msg.data (), body_size);
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} else {
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size = group_size + body_size + 1;
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// TODO: check if larger than maximum size
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out_buffer[0] = (unsigned char) group_size;
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memcpy (out_buffer + 1, group_msg.data (), group_size);
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memcpy (out_buffer + 1 + group_size, body_msg.data (), body_size);
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}
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rc = group_msg.close ();
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errno_assert (rc == 0);
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body_msg.close ();
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errno_assert (rc == 0);
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#ifdef ZMQ_HAVE_WINDOWS
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rc = sendto (fd, (const char *) out_buffer, (int) size, 0, out_address,
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(int) out_addrlen);
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wsa_assert (rc != SOCKET_ERROR);
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#elif defined ZMQ_HAVE_VXWORKS
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rc = sendto (fd, (caddr_t) out_buffer, size, 0,
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(sockaddr *) out_address, (int) out_addrlen);
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errno_assert (rc != -1);
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#else
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rc = sendto (fd, out_buffer, size, 0, out_address, out_addrlen);
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errno_assert (rc != -1);
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#endif
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} else
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reset_pollout (handle);
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}
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const char *zmq::udp_engine_t::get_endpoint () const
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{
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return "";
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}
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void zmq::udp_engine_t::restart_output ()
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{
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// If we don't support send we just drop all messages
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if (!send_enabled) {
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msg_t msg;
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while (session->pull_msg (&msg) == 0)
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msg.close ();
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} else {
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set_pollout (handle);
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out_event ();
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}
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}
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void zmq::udp_engine_t::in_event ()
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{
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struct sockaddr_in in_address;
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socklen_t in_addrlen = sizeof (sockaddr_in);
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#ifdef ZMQ_HAVE_WINDOWS
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int nbytes = recvfrom (fd, (char *) in_buffer, MAX_UDP_MSG, 0,
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(sockaddr *) &in_address, &in_addrlen);
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const int last_error = WSAGetLastError ();
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if (nbytes == SOCKET_ERROR) {
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wsa_assert (last_error == WSAENETDOWN || last_error == WSAENETRESET
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|| last_error == WSAEWOULDBLOCK);
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return;
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}
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#elif defined ZMQ_HAVE_VXWORKS
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int nbytes = recvfrom (fd, (char *) in_buffer, MAX_UDP_MSG, 0,
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(sockaddr *) &in_address, (int *) &in_addrlen);
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if (nbytes == -1) {
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errno_assert (errno != EBADF && errno != EFAULT && errno != ENOMEM
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&& errno != ENOTSOCK);
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return;
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}
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#else
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int nbytes = recvfrom (fd, in_buffer, MAX_UDP_MSG, 0,
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(sockaddr *) &in_address, &in_addrlen);
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if (nbytes == -1) {
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errno_assert (errno != EBADF && errno != EFAULT && errno != ENOMEM
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&& errno != ENOTSOCK);
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return;
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}
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#endif
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int rc;
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int body_size;
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int body_offset;
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msg_t msg;
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if (options.raw_socket) {
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sockaddr_to_msg (&msg, &in_address);
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body_size = nbytes;
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body_offset = 0;
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} else {
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char *group_buffer = (char *) in_buffer + 1;
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int group_size = in_buffer[0];
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rc = msg.init_size (group_size);
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errno_assert (rc == 0);
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msg.set_flags (msg_t::more);
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memcpy (msg.data (), group_buffer, group_size);
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// This doesn't fit, just ingore
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if (nbytes - 1 < group_size)
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return;
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body_size = nbytes - 1 - group_size;
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body_offset = 1 + group_size;
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}
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// Push group description to session
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rc = session->push_msg (&msg);
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errno_assert (rc == 0 || (rc == -1 && errno == EAGAIN));
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// Group description message doesn't fit in the pipe, drop
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if (rc != 0) {
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rc = msg.close ();
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errno_assert (rc == 0);
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reset_pollin (handle);
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return;
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}
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rc = msg.close ();
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errno_assert (rc == 0);
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rc = msg.init_size (body_size);
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errno_assert (rc == 0);
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memcpy (msg.data (), in_buffer + body_offset, body_size);
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// Push message body to session
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rc = session->push_msg (&msg);
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// Message body doesn't fit in the pipe, drop and reset session state
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if (rc != 0) {
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rc = msg.close ();
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errno_assert (rc == 0);
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session->reset ();
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reset_pollin (handle);
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return;
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}
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rc = msg.close ();
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errno_assert (rc == 0);
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session->flush ();
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}
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void zmq::udp_engine_t::restart_input ()
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{
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if (!recv_enabled)
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return;
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set_pollin (handle);
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in_event ();
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}
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