2009-12-13 14:45:23 +01:00
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/*
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2010-01-05 08:29:35 +01:00
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Copyright (c) 2007-2010 iMatix Corporation
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2009-12-13 14:45:23 +01:00
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This file is part of 0MQ.
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0MQ is free software; you can redistribute it and/or modify it under
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the terms of the Lesser GNU General Public License as published by
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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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0MQ is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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Lesser GNU General Public License for more details.
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You should have received a copy of the Lesser GNU 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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2010-03-11 20:33:27 +01:00
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#include "../include/zmq.h"
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2009-12-13 14:45:23 +01:00
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#include "xrep.hpp"
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#include "err.hpp"
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2010-02-16 18:30:38 +01:00
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#include "pipe.hpp"
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2009-12-13 14:45:23 +01:00
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zmq::xrep_t::xrep_t (class app_thread_t *parent_) :
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2010-04-27 17:36:00 +02:00
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socket_base_t (parent_),
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current_in (0),
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2010-07-06 22:47:07 +02:00
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prefetched (false),
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2010-04-27 17:36:00 +02:00
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more_in (false),
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current_out (NULL),
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more_out (false)
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2009-12-13 14:45:23 +01:00
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{
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options.requires_in = true;
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options.requires_out = true;
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2010-02-12 19:42:35 +01:00
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2010-02-14 13:34:48 +01:00
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// On connect, pipes are created only after initial handshaking.
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// That way we are aware of the peer's identity when binding to the pipes.
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options.immediate_connect = false;
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2009-12-13 14:45:23 +01:00
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}
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zmq::xrep_t::~xrep_t ()
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{
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2010-04-27 17:36:00 +02:00
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for (inpipes_t::iterator it = inpipes.begin (); it != inpipes.end (); it++)
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it->reader->term ();
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for (outpipes_t::iterator it = outpipes.begin (); it != outpipes.end ();
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it++)
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it->second.writer->term ();
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2009-12-13 14:45:23 +01:00
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}
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void zmq::xrep_t::xattach_pipes (class reader_t *inpipe_,
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2010-02-16 18:30:38 +01:00
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class writer_t *outpipe_, const blob_t &peer_identity_)
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2009-12-13 14:45:23 +01:00
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{
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2009-12-15 09:09:19 +01:00
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zmq_assert (inpipe_ && outpipe_);
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2010-02-16 18:30:38 +01:00
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// TODO: What if new connection has same peer identity as the old one?
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2010-04-27 17:36:00 +02:00
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outpipe_t outpipe = {outpipe_, true};
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2010-02-16 18:30:38 +01:00
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bool ok = outpipes.insert (std::make_pair (
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2010-04-27 17:36:00 +02:00
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peer_identity_, outpipe)).second;
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2010-02-16 18:30:38 +01:00
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zmq_assert (ok);
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2010-04-27 17:36:00 +02:00
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inpipe_t inpipe = {inpipe_, peer_identity_, true};
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inpipes.push_back (inpipe);
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2009-12-13 14:45:23 +01:00
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}
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void zmq::xrep_t::xdetach_inpipe (class reader_t *pipe_)
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{
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2010-04-27 17:36:00 +02:00
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// TODO:!
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for (inpipes_t::iterator it = inpipes.begin (); it != inpipes.end ();
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it++) {
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if (it->reader == pipe_) {
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inpipes.erase (it);
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return;
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}
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}
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zmq_assert (false);
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2009-12-13 14:45:23 +01:00
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}
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void zmq::xrep_t::xdetach_outpipe (class writer_t *pipe_)
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{
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2010-02-16 18:30:38 +01:00
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for (outpipes_t::iterator it = outpipes.begin ();
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2010-04-27 17:36:00 +02:00
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it != outpipes.end (); ++it) {
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if (it->second.writer == pipe_) {
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2010-02-16 18:30:38 +01:00
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outpipes.erase (it);
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2010-04-27 17:36:00 +02:00
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if (pipe_ == current_out)
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current_out = NULL;
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2010-02-16 18:30:38 +01:00
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return;
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}
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2010-04-27 17:36:00 +02:00
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}
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2009-12-13 14:45:23 +01:00
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zmq_assert (false);
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}
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void zmq::xrep_t::xkill (class reader_t *pipe_)
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{
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2010-04-27 17:36:00 +02:00
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for (inpipes_t::iterator it = inpipes.begin (); it != inpipes.end ();
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it++) {
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if (it->reader == pipe_) {
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zmq_assert (it->active);
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it->active = false;
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return;
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}
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}
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zmq_assert (false);
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2009-12-13 14:45:23 +01:00
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}
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void zmq::xrep_t::xrevive (class reader_t *pipe_)
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{
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2010-04-27 17:36:00 +02:00
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for (inpipes_t::iterator it = inpipes.begin (); it != inpipes.end ();
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it++) {
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if (it->reader == pipe_) {
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zmq_assert (!it->active);
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it->active = true;
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return;
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}
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}
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zmq_assert (false);
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2009-12-13 14:45:23 +01:00
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}
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2010-03-01 10:13:26 +01:00
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void zmq::xrep_t::xrevive (class writer_t *pipe_)
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{
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2010-04-27 17:36:00 +02:00
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for (outpipes_t::iterator it = outpipes.begin ();
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it != outpipes.end (); ++it) {
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if (it->second.writer == pipe_) {
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zmq_assert (!it->second.active);
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it->second.active = true;
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return;
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}
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}
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zmq_assert (false);
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2010-03-01 10:13:26 +01:00
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}
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2009-12-13 14:45:23 +01:00
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int zmq::xrep_t::xsetsockopt (int option_, const void *optval_,
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size_t optvallen_)
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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::xrep_t::xsend (zmq_msg_t *msg_, int flags_)
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{
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2010-04-27 17:36:00 +02:00
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// If this is the first part of the message it's the identity 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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2010-08-11 17:05:19 +02:00
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// If we have malformed message (prefix with no subsequent message)
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// then just silently drop the message.
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if ((msg_->flags & ZMQ_MSG_MORE) == 0)
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return 0;
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2010-04-27 17:36:00 +02:00
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more_out = true;
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// Find the pipe associated with the identity stored in the prefix.
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// If there's no such pipe just silently drop the message.
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blob_t identity ((unsigned char*) zmq_msg_data (msg_),
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zmq_msg_size (msg_));
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outpipes_t::iterator it = outpipes.find (identity);
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if (it == outpipes.end ())
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return 0;
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2010-08-11 17:05:19 +02:00
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2010-04-27 17:36:00 +02:00
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// Remember the outgoing pipe.
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current_out = it->second.writer;
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2010-02-16 18:30:38 +01:00
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return 0;
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}
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2010-04-27 17:36:00 +02:00
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// Check whether this is the last part of the message.
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more_out = msg_->flags & ZMQ_MSG_MORE;
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2010-03-02 12:41:33 +01:00
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2010-04-27 17:36:00 +02:00
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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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bool ok = current_out->write (msg_);
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zmq_assert (ok);
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if (!more_out) {
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current_out->flush ();
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current_out = NULL;
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}
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}
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else {
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int rc = zmq_msg_close (msg_);
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zmq_assert (rc == 0);
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}
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2010-02-16 18:30:38 +01:00
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// Detach the message from the data buffer.
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int rc = zmq_msg_init (msg_);
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zmq_assert (rc == 0);
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return 0;
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2009-12-13 14:45:23 +01:00
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}
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int zmq::xrep_t::xrecv (zmq_msg_t *msg_, int flags_)
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{
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2010-04-27 17:36:00 +02:00
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// Deallocate old content of the message.
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zmq_msg_close (msg_);
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2010-07-06 22:47:07 +02:00
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if (prefetched) {
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zmq_msg_move (msg_, &prefetched_msg);
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more_in = msg_->flags & ZMQ_MSG_MORE;
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prefetched = false;
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return 0;
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}
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2010-04-27 17:36:00 +02:00
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// If we are in the middle of reading a message, just grab next part of it.
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if (more_in) {
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zmq_assert (inpipes [current_in].active);
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bool fetched = inpipes [current_in].reader->read (msg_);
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zmq_assert (fetched);
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more_in = msg_->flags & ZMQ_MSG_MORE;
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if (!more_in) {
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current_in++;
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if (current_in >= inpipes.size ())
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current_in = 0;
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}
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return 0;
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}
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// Round-robin over the pipes to get the next message.
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for (int count = inpipes.size (); count != 0; count--) {
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// Try to fetch new message.
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2010-07-06 22:47:07 +02:00
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if (inpipes [current_in].active)
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prefetched = inpipes [current_in].reader->read (&prefetched_msg);
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2010-04-27 17:36:00 +02:00
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// If we have a message, create a prefix and return it to the caller.
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2010-07-06 22:47:07 +02:00
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if (prefetched) {
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2010-04-27 17:36:00 +02:00
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int rc = zmq_msg_init_size (msg_,
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inpipes [current_in].identity.size ());
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zmq_assert (rc == 0);
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memcpy (zmq_msg_data (msg_), inpipes [current_in].identity.data (),
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zmq_msg_size (msg_));
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2010-04-30 04:53:41 +02:00
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msg_->flags = ZMQ_MSG_MORE;
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2010-04-27 17:36:00 +02:00
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return 0;
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}
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// If me don't have a message, move to next pipe.
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current_in++;
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if (current_in >= inpipes.size ())
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current_in = 0;
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}
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// No message is available. Initialise the output parameter
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// to be a 0-byte message.
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zmq_msg_init (msg_);
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errno = EAGAIN;
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return -1;
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2009-12-13 14:45:23 +01:00
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}
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bool zmq::xrep_t::xhas_in ()
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{
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2010-04-27 17:36:00 +02:00
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// There are subsequent parts of the partly-read message available.
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2010-07-06 22:47:07 +02:00
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if (prefetched || more_in)
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2010-04-27 17:36:00 +02:00
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return true;
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// Note that messing with current doesn't break the fairness of fair
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// queueing algorithm. If there are no messages available current will
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// get back to its original value. Otherwise it'll point to the first
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// pipe holding messages, skipping only pipes with no messages available.
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for (int count = inpipes.size (); count != 0; count--) {
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if (inpipes [current_in].active &&
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inpipes [current_in].reader->check_read ())
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return true;
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current_in++;
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if (current_in >= inpipes.size ())
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current_in = 0;
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}
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return false;
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2009-12-13 14:45:23 +01:00
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}
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bool zmq::xrep_t::xhas_out ()
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{
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2010-02-16 18:30:38 +01:00
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// In theory, XREP socket is always ready for writing. Whether actual
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// attempt to write succeeds depends on whitch pipe the message is going
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// to be routed to.
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return true;
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2009-12-13 14:45:23 +01:00
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}
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