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// **********************************************************************
//
// Copyright (c) 2003-2017 ZeroC, Inc. All rights reserved.
//
// This copy of Ice is licensed to you under the terms described in the
// ICE_LICENSE file included in this distribution.
//
// **********************************************************************
#include <Ice/Ice.h>
#include <TestCommon.h>
#include <Test.h>
#include <InstrumentationI.h>
DEFINE_TEST("client")
using namespace std;
using namespace Test;
int
run(int, char**, const Ice::CommunicatorPtr& communicator, const Ice::CommunicatorPtr& communicator2)
{
RetryPrx allTests(const Ice::CommunicatorPtr&, const Ice::CommunicatorPtr&, const string&);
RetryPrx retry = allTests(communicator, communicator2, "retry:default -p 12010");
retry->shutdown();
return EXIT_SUCCESS;
}
int
main(int argc, char* argv[])
{
#ifdef ICE_STATIC_LIBS
Ice::registerIceSSL();
#endif
int status;
Ice::CommunicatorPtr communicator;
Ice::CommunicatorPtr communicator2;
try
{
initCounts();
Ice::InitializationData initData;
initData.properties = Ice::createProperties(argc, argv);
initData.observer = getObserver();
//
// This test kills connections, so we don't want warnings.
//
initData.properties->setProperty("Ice.Warn.Connections", "0");
// Disable PrintStackTraces otherwise the test can fail on Windows/Debug
initData.properties->setProperty("Ice.PrintStackTraces", "0");
initData.properties->setProperty("Ice.RetryIntervals", "0 1 10 1");
communicator = Ice::initialize(argc, argv, initData);
//
// Configure a second communicator for the invocation timeout
// + retry test, we need to configure a large retry interval
// to avoid time-sensitive failures.
//
Ice::InitializationData initData2;
initData2.properties = initData.properties->clone();
initData2.properties->setProperty("Ice.RetryIntervals", "0 1 10000");
initData2.observer = getObserver();
communicator2 = Ice::initialize(initData2);
status = run(argc, argv, communicator, communicator2);
}
catch(const Ice::Exception& ex)
{
cerr << ex << endl;
status = EXIT_FAILURE;
}
if(communicator)
{
try
{
communicator->destroy();
}
catch(const Ice::Exception& ex)
{
cerr << ex << endl;
status = EXIT_FAILURE;
}
}
if(communicator2)
{
try
{
communicator2->destroy();
}
catch(const Ice::Exception& ex)
{
cerr << ex << endl;
status = EXIT_FAILURE;
}
}
return status;
}
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