FairMQ/fairmq/test/protocols/_push_pull_multipart.cxx
Dennis Klein 8bc21675af Refactor TransportFactory to RAII
* Remove explicit Initialize and Terminate states,
    map them onto ctor/dtor
  * Remove no longer needed Shutdown state
  * Remove deprecated SetTransport()
2017-05-24 16:37:33 +02:00

161 lines
4.5 KiB
C++

/********************************************************************************
* Copyright (C) 2017 GSI Helmholtzzentrum fuer Schwerionenforschung GmbH *
* *
* This software is distributed under the terms of the *
* GNU Lesser General Public Licence (LGPL) version 3, *
* copied verbatim in the file "LICENSE" *
********************************************************************************/
#include <gtest/gtest.h>
#include <FairMQChannel.h>
#include <FairMQParts.h>
#include <FairMQLogger.h>
#include <FairMQTransportFactory.h>
#include <algorithm>
#include <memory>
#include <sstream>
#include <string>
#include <thread>
namespace
{
using namespace std;
auto RunSingleThreadedMultipart(string transport, string address) -> void {
auto factory = FairMQTransportFactory::CreateTransportFactory(transport);
auto push = FairMQChannel{"Push", "push", factory};
ASSERT_TRUE(push.Bind(address));
auto pull = FairMQChannel{"Pull", "pull", factory};
pull.Connect(address);
// TODO validate that fTransportFactory is not nullptr
// TODO validate that fSocket is not nullptr
ASSERT_TRUE(push.ValidateChannel());
ASSERT_TRUE(pull.ValidateChannel());
{
auto sentMsg = FairMQParts{};
sentMsg.AddPart(push.NewSimpleMessage("1"));
sentMsg.AddPart(push.NewSimpleMessage("2"));
sentMsg.AddPart(push.NewSimpleMessage("3"));
ASSERT_GE(push.Send(sentMsg), 0);
}
auto receivedMsg = FairMQParts{};
ASSERT_GE(pull.Receive(receivedMsg), 0);
stringstream out;
for_each(receivedMsg.cbegin(), receivedMsg.cend(), [&out](const FairMQMessagePtr& part) {
out << string{static_cast<char*>(part->GetData()), part->GetSize()};
});
ASSERT_EQ(out.str(), "123");
}
auto RunMultiThreadedMultipart(string transport, string address) -> void
{
auto factory = FairMQTransportFactory::CreateTransportFactory(transport);
auto push = FairMQChannel{"Push", "push", factory};
ASSERT_TRUE(push.Bind(address));
auto pull = FairMQChannel{"Pull", "pull", factory};
pull.Connect(address);
auto pusher = thread{[&push](){
ASSERT_TRUE(push.ValidateChannel());
auto sentMsg = FairMQParts{};
sentMsg.AddPart(push.NewSimpleMessage("1"));
sentMsg.AddPart(push.NewSimpleMessage("2"));
sentMsg.AddPart(push.NewSimpleMessage("3"));
ASSERT_GE(push.Send(sentMsg), 0);
}};
auto puller = thread{[&pull](){
ASSERT_TRUE(pull.ValidateChannel());
auto receivedMsg = FairMQParts{};
ASSERT_GE(pull.Receive(receivedMsg), 0);
stringstream out;
for_each(receivedMsg.cbegin(), receivedMsg.cend(), [&out](const FairMQMessagePtr& part) {
out << string{static_cast<char*>(part->GetData()), part->GetSize()};
});
ASSERT_EQ(out.str(), "123");
}};
pusher.join();
puller.join();
}
TEST(PushPull, ST_ZeroMQ__inproc_Multipart)
{
RunSingleThreadedMultipart("zeromq", "inproc://test");
}
TEST(PushPull, ST_Shmem___inproc_Multipart)
{
RunSingleThreadedMultipart("shmem", "inproc://test");
}
#ifdef NANOMSG_FOUND
TEST(PushPull, ST_Nanomsg_inproc_Multipart)
{
RunSingleThreadedMultipart("nanomsg", "inproc://test");
}
#endif /* NANOMSG_FOUND */
TEST(PushPull, ST_ZeroMQ__ipc____Multipart)
{
RunSingleThreadedMultipart("zeromq", "ipc://test");
}
TEST(PushPull, ST_Shmen___ipc____Multipart)
{
RunSingleThreadedMultipart("shmem", "ipc://test");
}
#ifdef NANOMSG_FOUND
TEST(PushPull, ST_Nanomsg_ipc____Multipart)
{
RunSingleThreadedMultipart("nanomsg", "ipc://test");
}
#endif /* NANOMSG_FOUND */
TEST(PushPull, MT_ZeroMQ__inproc_Multipart)
{
RunMultiThreadedMultipart("zeromq", "inproc://test");
}
TEST(PushPull, MT_Shmem___inproc_Multipart)
{
RunMultiThreadedMultipart("shmem", "inproc://test");
}
#ifdef NANOMSG_FOUND
TEST(PushPull, MT_Nanomsg_inproc_Multipart)
{
RunMultiThreadedMultipart("nanomsg", "inproc://test");
}
#endif /* NANOMSG_FOUND */
TEST(PushPull, MT_ZeroMQ__ipc____Multipart)
{
RunMultiThreadedMultipart("zeromq", "ipc://test");
}
TEST(PushPull, MT_Shmem___ipc____Multipart)
{
RunMultiThreadedMultipart("shmem", "ipc://test");
}
#ifdef NANOMSG_FOUND
TEST(PushPull, MT_Nanomsg_ipc____Multipart)
{
RunMultiThreadedMultipart("nanomsg", "ipc://test");
}
#endif /* NANOMSG_FOUND */
} // namespace