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Of course people still "can" distributed the sources under the LGPLv3. However we provide COPYING.LESSER with additional grants. Solution: specify these grants in the header of each source file.
189 lines
5.7 KiB
C++
189 lines
5.7 KiB
C++
/*
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Copyright (c) 2007-2015 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 "testutil.hpp"
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void test_stream_2_stream(){
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void *rbind, *rconn1;
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int ret;
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char buff[256];
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char msg[] = "hi 1";
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const char *bindip = "tcp://127.0.0.1:5556";
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int zero = 0;
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void *ctx = zmq_ctx_new ();
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// Set up listener STREAM.
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rbind = zmq_socket (ctx, ZMQ_STREAM);
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assert (rbind);
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ret = zmq_setsockopt (rbind, ZMQ_LINGER, &zero, sizeof (zero));
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assert (0 == ret);
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ret = zmq_bind (rbind, bindip);
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assert(0 == ret);
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// Set up connection stream.
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rconn1 = zmq_socket (ctx, ZMQ_STREAM);
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assert (rconn1);
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ret = zmq_setsockopt (rconn1, ZMQ_LINGER, &zero, sizeof (zero));
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assert (0 == ret);
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// Do the connection.
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ret = zmq_setsockopt (rconn1, ZMQ_CONNECT_RID, "conn1", 6);
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assert (0 == ret);
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ret = zmq_connect (rconn1, bindip);
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/* Uncomment to test assert on duplicate rid.
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// Test duplicate connect attempt.
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ret = zmq_setsockopt (rconn1, ZMQ_CONNECT_RID, "conn1", 6);
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assert (0 == ret);
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ret = zmq_connect (rconn1, bindip);
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assert (0 == ret);
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*/
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// Send data to the bound stream.
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ret = zmq_send (rconn1, "conn1", 6, ZMQ_SNDMORE);
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assert (6 == ret);
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ret = zmq_send (rconn1, msg, 5, 0);
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assert (5 == ret);
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// Accept data on the bound stream.
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ret = zmq_recv (rbind, buff, 256, 0);
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assert (ret);
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assert (0 == buff[0]);
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ret = zmq_recv (rbind, buff+128, 128, 0);
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assert (5 == ret);
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assert ('h' == buff[128]);
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// Handle close of the socket.
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ret = zmq_unbind (rbind, bindip);
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assert(0 == ret);
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ret = zmq_close (rbind);
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assert(0 == ret);
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ret = zmq_close (rconn1);
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assert(0 == ret);
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zmq_ctx_destroy (ctx);
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}
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void test_router_2_router(bool named){
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void *rbind, *rconn1;
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int ret;
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char buff[256];
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char msg[] = "hi 1";
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const char *bindip = "tcp://127.0.0.1:5556";
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int zero = 0;
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void *ctx = zmq_ctx_new ();
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// Create bind socket.
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rbind = zmq_socket (ctx, ZMQ_ROUTER);
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assert (rbind);
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ret = zmq_setsockopt (rbind, ZMQ_LINGER, &zero, sizeof (zero));
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assert (0 == ret);
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ret = zmq_bind (rbind, bindip);
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assert (0 == ret);
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// Create connection socket.
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rconn1 = zmq_socket (ctx, ZMQ_ROUTER);
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assert (rconn1);
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ret = zmq_setsockopt (rconn1, ZMQ_LINGER, &zero, sizeof (zero));
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assert (0 == ret);
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// If we're in named mode, set some identities.
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if (named) {
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ret = zmq_setsockopt (rbind, ZMQ_IDENTITY, "X", 1);
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ret = zmq_setsockopt (rconn1, ZMQ_IDENTITY, "Y", 1);
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}
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// Make call to connect using a connect_rid.
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ret = zmq_setsockopt (rconn1, ZMQ_CONNECT_RID, "conn1", 6);
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assert (0 == ret);
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ret = zmq_connect (rconn1, bindip);
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assert (0 == ret);
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/* Uncomment to test assert on duplicate rid
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// Test duplicate connect attempt.
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ret = zmq_setsockopt (rconn1, ZMQ_CONNECT_RID, "conn1", 6);
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assert (0 == ret);
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ret = zmq_connect (rconn1, bindip);
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assert (0 == ret);
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*/
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// Send some data.
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ret = zmq_send (rconn1, "conn1", 6, ZMQ_SNDMORE);
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assert (6 == ret);
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ret = zmq_send (rconn1, msg, 5, 0);
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assert (5 == ret);
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// Receive the name.
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ret = zmq_recv (rbind, buff, 256, 0);
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if (named)
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assert (ret && 'Y' == buff[0]);
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else
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assert (ret && 0 == buff[0]);
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// Receive the data.
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ret = zmq_recv (rbind, buff+128, 128, 0);
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assert(5 == ret && 'h' == buff[128]);
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// Send some data back.
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if (named) {
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ret = zmq_send (rbind, buff, 1, ZMQ_SNDMORE);
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assert (1 == ret);
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}
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else {
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ret = zmq_send (rbind, buff, 5, ZMQ_SNDMORE);
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assert (5 == ret);
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}
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ret = zmq_send_const (rbind, "ok", 3, 0);
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assert (3 == ret);
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// If bound socket identity naming a problem, we'll likely see something funky here.
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ret = zmq_recv (rconn1, buff, 256, 0);
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assert ('c' == buff[0] && 6 == ret);
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ret = zmq_recv (rconn1, buff+128, 128, 0);
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assert (3 == ret && 'o' == buff[128]);
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ret = zmq_unbind (rbind, bindip);
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assert(0 == ret);
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ret = zmq_close (rbind);
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assert(0 == ret);
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ret = zmq_close (rconn1);
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assert(0 == ret);
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zmq_ctx_destroy (ctx);
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}
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int main (void)
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{
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setup_test_environment ();
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test_stream_2_stream ();
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test_router_2_router (false);
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test_router_2_router (true);
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return 0;
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}
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