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Remaining warnings originate from boost::msm and boost::mpl. Also, warnings with missing initializer list entries for DeviceOptions are false positives, since those are PODs.
167 lines
4.8 KiB
C++
167 lines
4.8 KiB
C++
/********************************************************************************
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* Copyright (C) 2014 GSI Helmholtzzentrum fuer Schwerionenforschung GmbH *
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* *
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* This software is distributed under the terms of the *
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* GNU Lesser General Public Licence version 3 (LGPL) version 3, *
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* copied verbatim in the file "LICENSE" *
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********************************************************************************/
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/**
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* runSink.cxx
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*
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* @since 2013-01-21
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* @author D. Klein, A. Rybalchenko
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*/
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#include <iostream>
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#include <csignal>
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#include "boost/program_options.hpp"
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#include "FairMQLogger.h"
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#include "FairMQBinSink.h"
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#ifdef NANOMSG
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#include "FairMQTransportFactoryNN.h"
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#else
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#include "FairMQTransportFactoryZMQ.h"
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#endif
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using namespace std;
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FairMQBinSink sink;
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static void s_signal_handler(int signal)
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{
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cout << endl << "Caught signal " << signal << endl;
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sink.ChangeState(FairMQBinSink::STOP);
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sink.ChangeState(FairMQBinSink::END);
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cout << "Shutdown complete. Bye!" << endl;
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exit(1);
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}
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static void s_catch_signals(void)
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{
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struct sigaction action;
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action.sa_handler = s_signal_handler;
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action.sa_flags = 0;
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sigemptyset(&action.sa_mask);
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sigaction(SIGINT, &action, NULL);
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sigaction(SIGTERM, &action, NULL);
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}
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typedef struct DeviceOptions
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{
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string id;
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int ioThreads;
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string inputSocketType;
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int inputBufSize;
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string inputMethod;
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string inputAddress;
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} DeviceOptions_t;
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inline bool parse_cmd_line(int _argc, char* _argv[], DeviceOptions* _options)
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{
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if (_options == NULL)
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throw runtime_error("Internal error: options' container is empty.");
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namespace bpo = boost::program_options;
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bpo::options_description desc("Options");
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desc.add_options()
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("id", bpo::value<string>()->required(), "Device ID")
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("io-threads", bpo::value<int>()->default_value(1), "Number of I/O threads")
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("input-socket-type", bpo::value<string>()->required(), "Input socket type: sub/pull")
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("input-buff-size", bpo::value<int>()->required(), "Input buffer size in number of messages (ZeroMQ)/bytes(nanomsg)")
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("input-method", bpo::value<string>()->required(), "Input method: bind/connect")
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("input-address", bpo::value<string>()->required(), "Input address, e.g.: \"tcp://*:5555\"")
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("help", "Print help messages");
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bpo::variables_map vm;
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bpo::store(bpo::parse_command_line(_argc, _argv, desc), vm);
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if ( vm.count("help") )
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{
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LOG(INFO) << "FairMQ Bin Sink" << endl << desc;
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return false;
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}
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bpo::notify(vm);
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if ( vm.count("id") )
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_options->id = vm["id"].as<string>();
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if ( vm.count("io-threads") )
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_options->ioThreads = vm["io-threads"].as<int>();
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if ( vm.count("input-socket-type") )
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_options->inputSocketType = vm["input-socket-type"].as<string>();
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if ( vm.count("input-buff-size") )
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_options->inputBufSize = vm["input-buff-size"].as<int>();
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if ( vm.count("input-method") )
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_options->inputMethod = vm["input-method"].as<string>();
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if ( vm.count("input-address") )
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_options->inputAddress = vm["input-address"].as<string>();
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return true;
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}
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int main(int argc, char** argv)
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{
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s_catch_signals();
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DeviceOptions_t options;
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try
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{
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if (!parse_cmd_line(argc, argv, &options))
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return 0;
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}
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catch (exception& e)
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{
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LOG(ERROR) << e.what();
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return 1;
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}
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LOG(INFO) << "PID: " << getpid();
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#ifdef NANOMSG
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FairMQTransportFactory* transportFactory = new FairMQTransportFactoryNN();
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#else
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FairMQTransportFactory* transportFactory = new FairMQTransportFactoryZMQ();
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#endif
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sink.SetTransport(transportFactory);
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sink.SetProperty(FairMQBinSink::Id, options.id);
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sink.SetProperty(FairMQBinSink::NumIoThreads, options.ioThreads);
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sink.SetProperty(FairMQBinSink::NumInputs, 1);
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sink.SetProperty(FairMQBinSink::NumOutputs, 0);
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sink.ChangeState(FairMQBinSink::INIT);
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sink.SetProperty(FairMQBinSink::InputSocketType, options.inputSocketType);
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sink.SetProperty(FairMQBinSink::InputRcvBufSize, options.inputBufSize);
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sink.SetProperty(FairMQBinSink::InputMethod, options.inputMethod);
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sink.SetProperty(FairMQBinSink::InputAddress, options.inputAddress);
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sink.ChangeState(FairMQBinSink::SETOUTPUT);
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sink.ChangeState(FairMQBinSink::SETINPUT);
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sink.ChangeState(FairMQBinSink::RUN);
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// wait until the running thread has finished processing.
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boost::unique_lock<boost::mutex> lock(sink.fRunningMutex);
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while (!sink.fRunningFinished)
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{
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sink.fRunningCondition.wait(lock);
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}
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sink.ChangeState(FairMQBinSink::STOP);
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sink.ChangeState(FairMQBinSink::END);
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return 0;
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}
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