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320 lines
9.5 KiB
C++
320 lines
9.5 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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#include "macros.hpp"
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#include "stream.hpp"
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#include "pipe.hpp"
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#include "wire.hpp"
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#include "random.hpp"
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#include "likely.hpp"
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#include "err.hpp"
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zmq::stream_t::stream_t (class ctx_t *parent_, uint32_t tid_, int sid_) :
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socket_base_t (parent_, tid_, sid_),
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prefetched (false),
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routing_id_sent (false),
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current_out (NULL),
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more_out (false),
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next_integral_routing_id (generate_random ())
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{
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options.type = ZMQ_STREAM;
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options.raw_socket = true;
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prefetched_routing_id.init ();
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prefetched_msg.init ();
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}
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zmq::stream_t::~stream_t ()
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{
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zmq_assert (outpipes.empty ());
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prefetched_routing_id.close ();
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prefetched_msg.close ();
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}
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void zmq::stream_t::xattach_pipe (pipe_t *pipe_, bool subscribe_to_all_)
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{
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LIBZMQ_UNUSED (subscribe_to_all_);
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zmq_assert (pipe_);
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identify_peer (pipe_);
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fq.attach (pipe_);
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}
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void zmq::stream_t::xpipe_terminated (pipe_t *pipe_)
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{
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outpipes_t::iterator it = outpipes.find (pipe_->get_routing_id ());
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zmq_assert (it != outpipes.end ());
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outpipes.erase (it);
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fq.pipe_terminated (pipe_);
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if (pipe_ == current_out)
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current_out = NULL;
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}
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void zmq::stream_t::xread_activated (pipe_t *pipe_)
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{
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fq.activated (pipe_);
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}
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void zmq::stream_t::xwrite_activated (pipe_t *pipe_)
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{
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outpipes_t::iterator it;
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for (it = outpipes.begin (); it != outpipes.end (); ++it)
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if (it->second.pipe == pipe_)
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break;
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zmq_assert (it != outpipes.end ());
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zmq_assert (!it->second.active);
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it->second.active = true;
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}
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int zmq::stream_t::xsend (msg_t *msg_)
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{
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// If this is the first part of the message it's the ID of the
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// peer to send the message to.
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if (!more_out) {
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zmq_assert (!current_out);
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// If we have malformed message (prefix with no subsequent message)
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// then just silently ignore it.
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// TODO: The connections should be killed instead.
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if (msg_->flags () & msg_t::more) {
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// Find the pipe associated with the routing id stored in the prefix.
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// If there's no such pipe return an error
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blob_t routing_id ((unsigned char *) msg_->data (), msg_->size ());
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outpipes_t::iterator it = outpipes.find (routing_id);
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if (it != outpipes.end ()) {
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current_out = it->second.pipe;
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if (!current_out->check_write ()) {
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it->second.active = false;
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current_out = NULL;
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errno = EAGAIN;
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return -1;
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}
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} else {
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errno = EHOSTUNREACH;
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return -1;
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}
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}
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// Expect one more message frame.
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more_out = true;
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int rc = msg_->close ();
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errno_assert (rc == 0);
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rc = msg_->init ();
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errno_assert (rc == 0);
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return 0;
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}
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// Ignore the MORE flag
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msg_->reset_flags (msg_t::more);
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// This is the last part of the message.
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more_out = false;
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// Push the message into the pipe. If there's no out pipe, just drop it.
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if (current_out) {
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// Close the remote connection if user has asked to do so
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// by sending zero length message.
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// Pending messages in the pipe will be dropped (on receiving term- ack)
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if (msg_->size () == 0) {
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current_out->terminate (false);
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int rc = msg_->close ();
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errno_assert (rc == 0);
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rc = msg_->init ();
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errno_assert (rc == 0);
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current_out = NULL;
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return 0;
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}
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bool ok = current_out->write (msg_);
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if (likely (ok))
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current_out->flush ();
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current_out = NULL;
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} else {
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int rc = msg_->close ();
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errno_assert (rc == 0);
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}
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// Detach the message from the data buffer.
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int rc = msg_->init ();
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errno_assert (rc == 0);
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return 0;
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}
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int zmq::stream_t::xsetsockopt (int option_,
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const void *optval_,
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size_t optvallen_)
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{
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bool is_int = (optvallen_ == sizeof (int));
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int value = 0;
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if (is_int)
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memcpy (&value, optval_, sizeof (int));
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switch (option_) {
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case ZMQ_CONNECT_ROUTING_ID:
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if (optval_ && optvallen_) {
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connect_routing_id.assign ((char *) optval_, optvallen_);
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return 0;
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}
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break;
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case ZMQ_STREAM_NOTIFY:
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if (is_int && (value == 0 || value == 1)) {
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options.raw_notify = (value != 0);
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return 0;
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}
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break;
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default:
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break;
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}
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errno = EINVAL;
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return -1;
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}
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int zmq::stream_t::xrecv (msg_t *msg_)
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{
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if (prefetched) {
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if (!routing_id_sent) {
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int rc = msg_->move (prefetched_routing_id);
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errno_assert (rc == 0);
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routing_id_sent = true;
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} else {
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int rc = msg_->move (prefetched_msg);
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errno_assert (rc == 0);
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prefetched = false;
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}
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return 0;
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}
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pipe_t *pipe = NULL;
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int rc = fq.recvpipe (&prefetched_msg, &pipe);
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if (rc != 0)
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return -1;
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zmq_assert (pipe != NULL);
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zmq_assert ((prefetched_msg.flags () & msg_t::more) == 0);
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// We have received a frame with TCP data.
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// Rather than sending this frame, we keep it in prefetched
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// buffer and send a frame with peer's ID.
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const blob_t &routing_id = pipe->get_routing_id ();
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rc = msg_->close ();
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errno_assert (rc == 0);
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rc = msg_->init_size (routing_id.size ());
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errno_assert (rc == 0);
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// forward metadata (if any)
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metadata_t *metadata = prefetched_msg.metadata ();
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if (metadata)
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msg_->set_metadata (metadata);
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memcpy (msg_->data (), routing_id.data (), routing_id.size ());
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msg_->set_flags (msg_t::more);
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prefetched = true;
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routing_id_sent = true;
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return 0;
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}
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bool zmq::stream_t::xhas_in ()
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{
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// We may already have a message pre-fetched.
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if (prefetched)
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return true;
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// Try to read the next message.
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// The message, if read, is kept in the pre-fetch buffer.
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pipe_t *pipe = NULL;
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int rc = fq.recvpipe (&prefetched_msg, &pipe);
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if (rc != 0)
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return false;
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zmq_assert (pipe != NULL);
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zmq_assert ((prefetched_msg.flags () & msg_t::more) == 0);
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const blob_t &routing_id = pipe->get_routing_id ();
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rc = prefetched_routing_id.init_size (routing_id.size ());
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errno_assert (rc == 0);
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// forward metadata (if any)
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metadata_t *metadata = prefetched_msg.metadata ();
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if (metadata)
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prefetched_routing_id.set_metadata (metadata);
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memcpy (prefetched_routing_id.data (), routing_id.data (),
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routing_id.size ());
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prefetched_routing_id.set_flags (msg_t::more);
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prefetched = true;
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routing_id_sent = false;
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return true;
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}
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bool zmq::stream_t::xhas_out ()
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{
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// In theory, STREAM socket is always ready for writing. Whether actual
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// attempt to write succeeds depends on which pipe the message is going
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// to be routed to.
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return true;
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}
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void zmq::stream_t::identify_peer (pipe_t *pipe_)
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{
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// Always assign routing id for raw-socket
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unsigned char buffer[5];
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buffer[0] = 0;
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blob_t routing_id;
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if (connect_routing_id.length ()) {
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routing_id.set ((unsigned char *) connect_routing_id.c_str (),
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connect_routing_id.length ());
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connect_routing_id.clear ();
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outpipes_t::iterator it = outpipes.find (routing_id);
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zmq_assert (it == outpipes.end ());
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} else {
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put_uint32 (buffer + 1, next_integral_routing_id++);
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routing_id.set (buffer, sizeof buffer);
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memcpy (options.routing_id, routing_id.data (), routing_id.size ());
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options.routing_id_size = (unsigned char) routing_id.size ();
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}
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pipe_->set_router_socket_routing_id (routing_id);
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// Add the record into output pipes lookup table
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outpipe_t outpipe = {pipe_, true};
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const bool ok =
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outpipes.ZMQ_MAP_INSERT_OR_EMPLACE (ZMQ_MOVE (routing_id), outpipe)
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.second;
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zmq_assert (ok);
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}
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