cfe5ed0ef4
Use snprintf() instead of sprintf() to avoid potential memory corruption. Fixed sprintf time_t call - cast to long long.
753 lines
32 KiB
C++
753 lines
32 KiB
C++
/*
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* Copyright (C) 2020 James Turner
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*
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* This file is part of the program FlightGear.
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*
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* This program is free software: you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation, either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program 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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* GNU General Public License for more details.
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*
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* You should have received a copy of the 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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#include "config.h"
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#include "test_traffic.hxx"
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#include <math.h>
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#include <cstring>
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#include <memory>
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#include "test_suite/FGTestApi/NavDataCache.hxx"
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#include "test_suite/FGTestApi/TestDataLogger.hxx"
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#include "test_suite/FGTestApi/testGlobals.hxx"
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#include <simgear/math/sg_geodesy.hxx>
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#include <AIModel/AIAircraft.hxx>
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#include <AIModel/AIFlightPlan.hxx>
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#include <AIModel/AIManager.hxx>
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#include <AIModel/performancedb.hxx>
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#include <Airports/airport.hxx>
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#include <Airports/airportdynamicsmanager.hxx>
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#include <Airports/groundnetwork.hxx>
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#include <Scenery/scenery.hxx>
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#include <Time/TimeManager.hxx>
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#include <Traffic/TrafficMgr.hxx>
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#include <simgear/math/sg_geodesy.hxx>
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#include <simgear/debug/logstream.hxx>
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#include <simgear/io/iostreams/sgstream.hxx>
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#include <simgear/timing/sg_time.hxx>
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#include <ATC/atc_mgr.hxx>
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#include <Main/fg_props.hxx>
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#include <Main/globals.hxx>
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/////////////////////////////////////////////////////////////////////////////
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// Set up function for each test.
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void TrafficTests::setUp()
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{
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time_t t = time(0); // get time now
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this->currentWorldTime = t - t%86400 + 86400 + 9 * 60;
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FGTestApi::setUp::initTestGlobals("Traffic");
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FGTestApi::setUp::initNavDataCache();
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fgSetBool("sim/ai/enabled", true);
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fgSetBool("sim/traffic-manager/enabled", true);
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fgSetBool("sim/signals/fdm-initialized", true);
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fgSetInt("/environment/visibility-m", 1000);
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fgSetBool("/environment/realwx/enabled", false);
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fgSetBool("/environment/metar/valid", false);
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fgSetBool("/sim/terrasync/ai-data-update-now", false);
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globals->append_data_path(SGPath::fromUtf8(FG_TEST_SUITE_DATA), false);
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// ensure EDDF has a valid ground net for parking testing
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FGAirport::clearAirportsCache();
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FGAirportRef egph = FGAirport::getByIdent("EGPH");
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egph->testSuiteInjectGroundnetXML(SGPath::fromUtf8(FG_TEST_SUITE_DATA) / "EGPH.groundnet.xml");
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FGAirportRef yssy = FGAirport::getByIdent("YSSY");
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yssy->testSuiteInjectGroundnetXML(SGPath::fromUtf8(FG_TEST_SUITE_DATA) / "YSSY.groundnet.xml");
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FGAirportRef ybbn = FGAirport::getByIdent("YBBN");
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ybbn->testSuiteInjectGroundnetXML(SGPath::fromUtf8(FG_TEST_SUITE_DATA) / "YBBN.groundnet.xml");
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globals->add_new_subsystem<PerformanceDB>(SGSubsystemMgr::GENERAL);
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globals->add_new_subsystem<FGATCManager>(SGSubsystemMgr::GENERAL);
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globals->add_new_subsystem<FGAIManager>(SGSubsystemMgr::GENERAL);
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globals->add_new_subsystem<flightgear::AirportDynamicsManager>(SGSubsystemMgr::GENERAL);
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globals->add_new_subsystem<FGTrafficManager>(SGSubsystemMgr::GENERAL);
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globals->get_subsystem_mgr()->bind();
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globals->get_subsystem_mgr()->init();
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globals->get_subsystem_mgr()->postinit();
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// This means time is always 00:09
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FGTestApi::adjustSimulationWorldTime(this->currentWorldTime);
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}
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// Clean up after each test.
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void TrafficTests::tearDown()
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{
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FGTestApi::tearDown::shutdownTestGlobals();
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}
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void TrafficTests::testPushback()
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{
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FGAirportRef departureAirport = FGAirport::getByIdent("EGPH");
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FGAirportRef arrivalAirport = FGAirport::getByIdent("EGPF");
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fgSetString("/sim/presets/airport-id", departureAirport->getId());
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fgSetInt("/environment/visibility-m", 1000);
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fgSetInt("/environment/metar/base-wind-speed-kt", 10);
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fgSetInt("/environment/metar/base-wind-dir-deg", 160);
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// Time to depart
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std::string dep = getTimeString(30);
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// Time to arrive
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std::string arr = getTimeString(320);
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const int radius = 18.0;
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const int cruiseAltFt = 32000;
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const int cruiseSpeedKnots = 80;
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const char* flighttype = "gate";
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FGAISchedule* schedule = new FGAISchedule(
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"B737", "KLM", departureAirport->getId(), "G-BLA", "ID", false, "B737", "KLM", "N", flighttype, radius, 8);
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FGScheduledFlight* flight = new FGScheduledFlight("", "", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "HBR_BN_2");
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schedule->assign(flight);
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SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
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const SGGeod position = departureAirport->geod();
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ParkingAssignment parking = departureAirport->getDynamics()->getParkingByName("north-cargo208");
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FGTestApi::setPositionAndStabilise(departureAirport->getDynamics()->getParkingByName("ga206").parking()->geod());
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aiAircraft->setPerformance("jet_transport", "");
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aiAircraft->setCompany("KLM");
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aiAircraft->setAcType("B737");
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aiAircraft->setSpeed(0);
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aiAircraft->setBank(0);
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const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
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const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
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time_t departureTime = globals->get_time_params()->get_cur_time();
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departureTime = departureTime + 90;
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std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
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flightPlanName, crs, departureTime,
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departureAirport, arrivalAirport, true, radius,
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cruiseAltFt, // cruise alt
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position.getLatitudeDeg(),
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position.getLongitudeDeg(),
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cruiseSpeedKnots, "gate",
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aiAircraft->getAcType(),
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aiAircraft->getCompany()));
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CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
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aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
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globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
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aiAircraft = flyAI(aiAircraft, "flight_testPushback_EGPH_EGPF_" + std::to_string(departureTime));
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}
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void TrafficTests::testPushbackCargo()
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{
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FGAirportRef egph = FGAirport::getByIdent("EGPH");
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FGAirportRef egpf = FGAirport::getByIdent("EGPF");
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fgSetString("/sim/presets/airport-id", "EGPH");
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// Time to depart
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std::string dep = getTimeString(30);
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// Time to arrive
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std::string arr = getTimeString(320);
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FGAISchedule* schedule = new FGAISchedule(
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"B737", "KLM", "EGPH", "G-BLA", "ID", false, "B737", "KLM", "N", "cargo", 24, 8);
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FGScheduledFlight* flight = new FGScheduledFlight("", "", "EGPH", "EGPF", 24, dep, arr, "WEEK", "HBR_BN_2");
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schedule->assign(flight);
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SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
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const SGGeod position = egph->geod();
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ParkingAssignment parking = egph->getDynamics()->getParkingByName("north-cargo208");
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FGTestApi::setPositionAndStabilise(egph->getDynamics()->getParkingByName("ga206").parking()->geod());
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aiAircraft->setPerformance("jet_transport", "");
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aiAircraft->setCompany("KLM");
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aiAircraft->setAcType("B737");
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aiAircraft->setSpeed(0);
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aiAircraft->setBank(0);
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const string flightPlanName = egph->getId() + "-" + egpf->getId() + ".xml";
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const int radius = 16.0;
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const int cruiseAltFt = 32000;
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const int cruiseSpeedKnots = 80;
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const double crs = SGGeodesy::courseDeg(egph->geod(), egpf->geod()); // direct course
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time_t departureTime = globals->get_time_params()->get_cur_time();
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departureTime = departureTime + 90;
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std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
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flightPlanName, crs, departureTime,
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egph, egpf, true, radius,
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cruiseAltFt, // cruise alt
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position.getLatitudeDeg(),
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position.getLongitudeDeg(),
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cruiseSpeedKnots, "cargo",
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aiAircraft->getAcType(),
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aiAircraft->getCompany()));
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CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
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aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
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globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
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aiAircraft = flyAI(aiAircraft, "flight_cargo_EGPH_EGPF_" + std::to_string(departureTime));
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}
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void TrafficTests::testChangeRunway()
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{
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FGAirportRef departureAirport = FGAirport::getByIdent("EGPH");
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FGAirportRef arrivalAirport = FGAirport::getByIdent("EGPF");
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fgSetString("/sim/presets/airport-id", departureAirport->getId());
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fgSetInt("/environment/visibility-m", 1000);
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fgSetInt("/environment/metar/base-wind-speed-kt", 10);
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fgSetInt("/environment/metar/base-wind-dir-deg", 160);
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// Time to depart
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std::string dep = getTimeString(60);
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// Time to arrive
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std::string arr = getTimeString(320);
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const int radius = 24.0;
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const int cruiseAltFt = 32000;
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const int cruiseSpeedKnots = 80;
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const char* flighttype = "gate";
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FGAISchedule* schedule = new FGAISchedule(
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"B737", "KLM", departureAirport->getId(), "G-BLA", "ID", false, "B737", "KLM", "N", flighttype, radius, 8);
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FGScheduledFlight* flight = new FGScheduledFlight("", "", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "HBR_BN_2");
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schedule->assign(flight);
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SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
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const SGGeod position = departureAirport->geod();
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FGTestApi::setPositionAndStabilise(position);
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aiAircraft->setPerformance("jet_transport", "");
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aiAircraft->setCompany("KLM");
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aiAircraft->setAcType("B737");
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aiAircraft->setSpeed(0);
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aiAircraft->setBank(0);
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const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
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const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
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time_t departureTime = globals->get_time_params()->get_cur_time();
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departureTime = departureTime + 90;
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std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
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flightPlanName, crs, departureTime,
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departureAirport, arrivalAirport, true, radius,
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cruiseAltFt, // cruise alt
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position.getLatitudeDeg(),
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position.getLongitudeDeg(),
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cruiseSpeedKnots, flighttype,
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aiAircraft->getAcType(),
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aiAircraft->getCompany()));
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CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
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aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
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globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
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aiAircraft = flyAI(aiAircraft, "flight_runway_EGPH_EGPF_" + std::to_string(departureTime));
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}
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void TrafficTests::testPushforward()
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{
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FGAirportRef departureAirport = FGAirport::getByIdent("YSSY");
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FGAirportRef arrivalAirport = FGAirport::getByIdent("YBBN");
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fgSetString("/sim/presets/airport-id", departureAirport->getId());
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// Time to depart
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std::string dep = getTimeString(60);
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// Time to arrive
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std::string arr = getTimeString(320);
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const int radius = 8.0;
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const int cruiseAltFt = 32000;
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const int cruiseSpeedKnots = 80;
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const char* flighttype = "ga";
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FGAISchedule* schedule = new FGAISchedule(
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"B737", "KLM", departureAirport->getId(), "G-BLA", "ID", false, "B737", "KLM", "N", flighttype, radius, 8);
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FGScheduledFlight* flight = new FGScheduledFlight("", "", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "HBR_BN_2");
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schedule->assign(flight);
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SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
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const SGGeod position = departureAirport->geod();
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FGTestApi::setPositionAndStabilise(position);
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aiAircraft->setPerformance("jet_transport", "");
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aiAircraft->setCompany("KLM");
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aiAircraft->setAcType("B737");
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aiAircraft->setSpeed(0);
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aiAircraft->setBank(0);
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const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
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const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
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time_t departureTime = globals->get_time_params()->get_cur_time();
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departureTime = departureTime + 90;
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std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
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flightPlanName, crs, departureTime,
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departureAirport, arrivalAirport, true, radius,
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cruiseAltFt, // cruise alt
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position.getLatitudeDeg(),
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position.getLongitudeDeg(),
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cruiseSpeedKnots, flighttype,
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aiAircraft->getAcType(),
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aiAircraft->getCompany()));
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CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
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aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
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globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
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aiAircraft = flyAI(aiAircraft, "flight_ga_YSSY_depart_" + std::to_string(departureTime));
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}
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void TrafficTests::testPushforwardSpeedy()
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{
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FGAirportRef departureAirport = FGAirport::getByIdent("YSSY");
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FGAirportRef arrivalAirport = FGAirport::getByIdent("YBBN");
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fgSetString("/sim/presets/airport-id", departureAirport->getId());
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// Time to depart
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std::string dep = getTimeString(60);
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// Time to arrive
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std::string arr = getTimeString(320);
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const int radius = 8.0;
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const int cruiseAltFt = 32000;
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const int cruiseSpeedKnots = 80;
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const char* flighttype = "ga";
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FGAISchedule* schedule = new FGAISchedule(
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"B737", "KLM", departureAirport->getId(), "G-BLA", "ID", false, "B737", "KLM", "N", flighttype, radius, 8);
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FGScheduledFlight* flight = new FGScheduledFlight("", "", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "HBR_BN_2");
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schedule->assign(flight);
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SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
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const SGGeod position = departureAirport->geod();
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FGTestApi::setPositionAndStabilise(position);
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aiAircraft->setPerformance("NotValid", "jet_transport");
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aiAircraft->setCompany("KLM");
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aiAircraft->setAcType("B737");
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aiAircraft->setSpeed(0);
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aiAircraft->setBank(0);
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const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
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const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
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time_t departureTime = globals->get_time_params()->get_cur_time();
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departureTime = departureTime + 90;
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std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
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flightPlanName, crs, departureTime,
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departureAirport, arrivalAirport, true, radius,
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cruiseAltFt, // cruise alt
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position.getLatitudeDeg(),
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position.getLongitudeDeg(),
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cruiseSpeedKnots, flighttype,
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aiAircraft->getAcType(),
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aiAircraft->getCompany()));
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CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
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aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
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globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
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aiAircraft = flyAI(aiAircraft, "flight_ga_YSSY_fast_depart_" + std::to_string(departureTime));
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}
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void TrafficTests::testPushforwardParkYBBN()
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{
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FGAirportRef departureAirport = FGAirport::getByIdent("YBBN");
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FGAirportRef arrivalAirport = FGAirport::getByIdent("YSSY");
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fgSetString("/sim/presets/airport-id", arrivalAirport->getId());
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// Time to depart
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std::string dep = getTimeString(60);
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// Time to arrive
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std::string arr = getTimeString(3260);
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const int radius = 8.0;
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const int cruiseAltFt = 32000;
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const int cruiseSpeedKnots = 80;
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const char* flighttype = "ga";
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FGAISchedule* schedule = new FGAISchedule(
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"B737", "KLM", departureAirport->getId(), "G-BLA", "ID", false, "B737", "KLM", "N", flighttype, radius, 8);
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FGScheduledFlight* flight = new FGScheduledFlight("gaParkYSSY", "", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "HBR_BN_2");
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schedule->assign(flight);
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SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
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const SGGeod position = departureAirport->geod();
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FGTestApi::setPositionAndStabilise(position);
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aiAircraft->setPerformance("ga", "");
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aiAircraft->setCompany("KLM");
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aiAircraft->setAcType("B737");
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aiAircraft->setSpeed(0);
|
|
aiAircraft->setBank(0);
|
|
|
|
const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
|
|
|
|
const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
|
|
time_t departureTime = globals->get_time_params()->get_cur_time();
|
|
departureTime = departureTime + 90;
|
|
|
|
|
|
std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
|
|
flightPlanName, crs, departureTime,
|
|
departureAirport, arrivalAirport, true, radius,
|
|
cruiseAltFt, // cruise alt
|
|
position.getLatitudeDeg(),
|
|
position.getLongitudeDeg(),
|
|
cruiseSpeedKnots, flighttype,
|
|
aiAircraft->getAcType(),
|
|
aiAircraft->getCompany()));
|
|
|
|
CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
|
|
aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
|
|
globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
|
|
|
|
aiAircraft = flyAI(aiAircraft, "flight_ga_YSSY_YBBN_park_" + std::to_string(departureTime));
|
|
|
|
int shortestDistance = 10000;
|
|
const FGParkingList& parkings(arrivalAirport->groundNetwork()->allParkings());
|
|
FGParkingList::const_iterator it;
|
|
FGParking* nearestParking = 0;
|
|
for (it = parkings.begin(); it != parkings.end(); ++it) {
|
|
int currentDistance = !nearestParking ? 9999 : SGGeodesy::distanceM(nearestParking->geod(), (*it)->geod());
|
|
if (currentDistance < shortestDistance) {
|
|
nearestParking = (*it);
|
|
shortestDistance = currentDistance;
|
|
/*
|
|
std::cout << (*it)->name() << "\t" << (*it)->getHeading()
|
|
<< "\t" << shortestDistance << "\t" << (*it)->geod() << "\n";
|
|
*/
|
|
}
|
|
}
|
|
|
|
CPPUNIT_ASSERT_EQUAL(true, aiAircraft->getDie());
|
|
}
|
|
|
|
void TrafficTests::testPushforwardParkYBBNRepeatGa()
|
|
{
|
|
FGAirportRef departureAirport = FGAirport::getByIdent("YBBN");
|
|
|
|
FGAirportRef arrivalAirport = FGAirport::getByIdent("YSSY");
|
|
|
|
fgSetString("/sim/presets/airport-id", arrivalAirport->getId());
|
|
|
|
// Time to depart
|
|
std::string dep = getTimeString(120);
|
|
// Time to arrive
|
|
std::string arr = getTimeString(3260);
|
|
// Time to arrive back
|
|
std::string ret = getTimeString(6460);
|
|
|
|
const int radius = 8.0;
|
|
const int cruiseAltFt = 32000;
|
|
const int cruiseSpeedKnots = 80;
|
|
const char* flighttype = "ga";
|
|
|
|
FGAISchedule* schedule = new FGAISchedule(
|
|
"B737", "KLM", departureAirport->getId(), "G-BLA", "TST_BN_1", false, "B737", "KLM", "N", flighttype, radius, 8);
|
|
FGScheduledFlight* flight = new FGScheduledFlight("gaParkYSSY", "VFR", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "TST_BN_1");
|
|
schedule->assign(flight);
|
|
|
|
FGScheduledFlight* returnFlight = new FGScheduledFlight("gaParkYSSY", "", arrivalAirport->getId(), departureAirport->getId(), 24, arr, ret, "WEEK", "TST_BN_1");
|
|
schedule->assign(returnFlight);
|
|
|
|
SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
|
|
|
|
const SGGeod position = departureAirport->geod();
|
|
FGTestApi::setPositionAndStabilise(position);
|
|
|
|
aiAircraft->setPerformance("ga", "");
|
|
aiAircraft->setCompany("KLM");
|
|
aiAircraft->setAcType("B737");
|
|
aiAircraft->setSpeed(0);
|
|
aiAircraft->setBank(0);
|
|
|
|
const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
|
|
|
|
const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
|
|
time_t departureTime = globals->get_time_params()->get_cur_time();
|
|
departureTime = departureTime + 90;
|
|
|
|
|
|
std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
|
|
flightPlanName, crs, departureTime,
|
|
departureAirport, arrivalAirport, true, radius,
|
|
cruiseAltFt, // cruise alt
|
|
position.getLatitudeDeg(),
|
|
position.getLongitudeDeg(),
|
|
cruiseSpeedKnots, flighttype,
|
|
aiAircraft->getAcType(),
|
|
aiAircraft->getCompany()));
|
|
CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
|
|
aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
|
|
globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
|
|
|
|
aiAircraft = flyAI(aiAircraft, "flight_ga_YSSY_YBBN_park_repeat" + std::to_string(departureTime));
|
|
|
|
int shortestDistance = 10000;
|
|
const FGParkingList& parkings(arrivalAirport->groundNetwork()->allParkings());
|
|
FGParkingList::const_iterator it;
|
|
FGParking* nearestParking = 0;
|
|
for (it = parkings.begin(); it != parkings.end(); ++it) {
|
|
int currentDistance = !nearestParking ? 9999 : SGGeodesy::distanceM(nearestParking->geod(), (*it)->geod());
|
|
if (currentDistance < shortestDistance) {
|
|
nearestParking = (*it);
|
|
shortestDistance = currentDistance;
|
|
}
|
|
}
|
|
|
|
CPPUNIT_ASSERT_EQUAL(true, (aiAircraft->getDie() || aiAircraft->GetFlightPlan()->getCurrentWaypoint()->getName() == "park"));
|
|
}
|
|
|
|
void TrafficTests::testPushforwardParkYBBNRepeatGate()
|
|
{
|
|
FGAirportRef departureAirport = FGAirport::getByIdent("YBBN");
|
|
|
|
FGAirportRef arrivalAirport = FGAirport::getByIdent("YSSY");
|
|
|
|
fgSetString("/sim/presets/airport-id", arrivalAirport->getId());
|
|
|
|
// Time to depart
|
|
std::string dep = getTimeString(10);
|
|
// Time to arrive
|
|
std::string arr = getTimeString(3260);
|
|
// Time to arrive back
|
|
std::string ret = getTimeString(6460);
|
|
|
|
const int radius = 20.0;
|
|
const int cruiseAltFt = 32000;
|
|
const int cruiseSpeedKnots = 80;
|
|
const char* flighttype = "gate";
|
|
|
|
FGAISchedule* schedule = new FGAISchedule(
|
|
"B737", "KLM", departureAirport->getId(), "G-BLA", "TST_BN_2", false, "B737", "KLM", "N", flighttype, radius, 8);
|
|
FGScheduledFlight* flight = new FGScheduledFlight("gateParkYSSY", "VFR", departureAirport->getId(), arrivalAirport->getId(), 24, dep, arr, "WEEK", "TST_BN_1");
|
|
schedule->assign(flight);
|
|
|
|
FGScheduledFlight* returnFlight = new FGScheduledFlight("gateParkYSSY", "", arrivalAirport->getId(), departureAirport->getId(), 24, arr, ret, "WEEK", "TST_BN_1");
|
|
schedule->assign(returnFlight);
|
|
|
|
const SGGeod position = departureAirport->geod();
|
|
FGTestApi::setPositionAndStabilise(position);
|
|
|
|
SGSharedPtr<FGAIAircraft> aiAircraft = new FGAIAircraft{schedule};
|
|
|
|
aiAircraft->setPerformance("gate", "");
|
|
aiAircraft->setCompany("KLM");
|
|
aiAircraft->setAcType("B737");
|
|
aiAircraft->setSpeed(0);
|
|
aiAircraft->setBank(0);
|
|
|
|
const string flightPlanName = departureAirport->getId() + "-" + arrivalAirport->getId() + ".xml";
|
|
|
|
const double crs = SGGeodesy::courseDeg(departureAirport->geod(), arrivalAirport->geod()); // direct course
|
|
time_t departureTime = globals->get_time_params()->get_cur_time();
|
|
departureTime = departureTime + 90;
|
|
|
|
|
|
std::unique_ptr<FGAIFlightPlan> fp(new FGAIFlightPlan(aiAircraft,
|
|
flightPlanName, crs, departureTime,
|
|
departureAirport, arrivalAirport, true, radius,
|
|
cruiseAltFt, // cruise alt
|
|
position.getLatitudeDeg(),
|
|
position.getLongitudeDeg(),
|
|
cruiseSpeedKnots, flighttype,
|
|
aiAircraft->getAcType(),
|
|
aiAircraft->getCompany()));
|
|
CPPUNIT_ASSERT_EQUAL(fp->isValidPlan(), true);
|
|
aiAircraft->FGAIBase::setFlightPlan(std::move(fp));
|
|
globals->get_subsystem<FGAIManager>()->attach(aiAircraft);
|
|
|
|
CPPUNIT_ASSERT_EQUAL(aiAircraft->GetFlightPlan()->isValidPlan(), true);
|
|
|
|
aiAircraft = flyAI(aiAircraft, "flight_gate_YSSY_YBBN_park_repeat" + std::to_string(departureTime));
|
|
|
|
int shortestDistance = 10000;
|
|
const FGParkingList& parkings(arrivalAirport->groundNetwork()->allParkings());
|
|
FGParkingList::const_iterator it;
|
|
FGParking* nearestParking = 0;
|
|
for (it = parkings.begin(); it != parkings.end(); ++it) {
|
|
int currentDistance = !nearestParking ? 9999 : SGGeodesy::distanceM(nearestParking->geod(), (*it)->geod());
|
|
if (currentDistance < shortestDistance) {
|
|
nearestParking = (*it);
|
|
shortestDistance = currentDistance;
|
|
}
|
|
}
|
|
|
|
CPPUNIT_ASSERT_EQUAL(true, (aiAircraft->getDie() || aiAircraft->GetFlightPlan()->getCurrentWaypoint()->getName() == "park"));
|
|
}
|
|
|
|
/**
|
|
*
|
|
*
|
|
*
|
|
*/
|
|
|
|
FGAIAircraft * TrafficTests::flyAI(SGSharedPtr<FGAIAircraft> aiAircraft, std::string testname) {
|
|
int lineIndex = 0;
|
|
|
|
CPPUNIT_ASSERT_EQUAL(aiAircraft->GetFlightPlan()->isValidPlan(), true);
|
|
|
|
|
|
time_t now = globals->get_time_params()->get_cur_time();
|
|
tm* startTime = localtime(&now);
|
|
time_t departureTime = aiAircraft->GetFlightPlan()->getStartTime();
|
|
|
|
char buffer[50];
|
|
char buffer2[50];
|
|
|
|
strftime (buffer,50,"%FT%TZ",startTime);
|
|
strftime (buffer2,50,"%FT%TZ", localtime(&departureTime));
|
|
|
|
SG_LOG(SG_AI, SG_DEBUG, "Start Time " << buffer << " First Departure " << buffer2);
|
|
|
|
char fname [160];
|
|
time_t t = time(0); // get time now
|
|
snprintf (fname, sizeof(fname), "%lld.csv", (long long) t);
|
|
SGPath p = SGPath::desktop() / (testname + fname);
|
|
sg_ofstream csvFile;
|
|
csvFile.open(p);
|
|
if(!csvFile.is_open()) {
|
|
SG_LOG(SG_AI, SG_DEBUG, "CSV File " << fname << " couldn't be opened");
|
|
}
|
|
if (sglog().get_log_priority() <= SG_DEBUG) {
|
|
aiAircraft->dumpCSVHeader(csvFile);
|
|
FGTestApi::setUp::logLinestringsToKML(testname);
|
|
}
|
|
flightgear::SGGeodVec geods = flightgear::SGGeodVec();
|
|
int iteration = 1;
|
|
int lastLeg = -1;
|
|
double lastHeading = -500;
|
|
double headingSum = 0;
|
|
int startSpeed = aiAircraft->GetFlightPlan()->getCurrentWaypoint()->getSpeed();
|
|
aiAircraft->AccelTo(startSpeed);
|
|
|
|
for (size_t i = 0; i < 12000000 && !(aiAircraft->getDie()) && aiAircraft->GetFlightPlan()->getLeg() < 10; i++) {
|
|
CPPUNIT_ASSERT_EQUAL(aiAircraft->GetFlightPlan()->isValidPlan(), true);
|
|
if (!aiAircraft->getDie()) {
|
|
// collect position
|
|
if (geods.empty() ||
|
|
SGGeodesy::distanceM(aiAircraft->getGeodPos(), geods.back()) > 0.05) {
|
|
geods.insert(geods.end(), aiAircraft->getGeodPos());
|
|
}
|
|
// follow aircraft
|
|
if (geods.empty() ||
|
|
(aiAircraft->getSpeed() > 0 &&
|
|
SGGeodesy::distanceM(aiAircraft->getGeodPos(), FGTestApi::getPosition()) > 10000 &&
|
|
/* stop following towards the end*/
|
|
aiAircraft->GetFlightPlan()->getLeg() < 8))
|
|
{
|
|
FGTestApi::setPosition(aiAircraft->getGeodPos());
|
|
}
|
|
}
|
|
// Leg has been incremented
|
|
if (aiAircraft->GetFlightPlan()->getLeg() != lastLeg ) {
|
|
// The current WP is really in our new leg
|
|
if (sglog().get_log_priority() <= SG_DEBUG) {
|
|
snprintf(buffer, sizeof(buffer), "AI Leg %d Callsign %s Iteration %d", lastLeg, aiAircraft->getCallSign().c_str(), iteration);
|
|
FGTestApi::writeGeodsToKML(buffer, geods);
|
|
}
|
|
if (aiAircraft->GetFlightPlan()->getLeg() < lastLeg) {
|
|
iteration++;
|
|
}
|
|
lastLeg = aiAircraft->GetFlightPlan()->getLeg();
|
|
SGGeod last = geods.back();
|
|
geods.clear();
|
|
geods.insert(geods.end(), last);
|
|
}
|
|
if (lastHeading==-500) {
|
|
lastHeading = aiAircraft->getTrueHeadingDeg();
|
|
}
|
|
headingSum += (lastHeading-aiAircraft->getTrueHeadingDeg());
|
|
lastHeading = aiAircraft->getTrueHeadingDeg();
|
|
aiAircraft->dumpCSV(csvFile, lineIndex++);
|
|
// A flight without loops should never reach 400°
|
|
CPPUNIT_ASSERT_LESSEQUAL(400.0, headingSum);
|
|
CPPUNIT_ASSERT_LESSEQUAL(10, aiAircraft->GetFlightPlan()->getLeg());
|
|
CPPUNIT_ASSERT_MESSAGE( "Aircraft has not completed test in time.", i < 3000000);
|
|
// Arrived at a parking
|
|
int beforeNextDepTime = aiAircraft->getTrafficRef()->getDepartureTime() - 30;
|
|
|
|
if (iteration > 1
|
|
&& aiAircraft->GetFlightPlan()->getLeg() == 1
|
|
&& aiAircraft->getSpeed() == 0
|
|
&& this->currentWorldTime < beforeNextDepTime) {
|
|
FGTestApi::adjustSimulationWorldTime(beforeNextDepTime);
|
|
SG_LOG(SG_AI, SG_BULK, "Jumped time " << (beforeNextDepTime - this->currentWorldTime) );
|
|
this->currentWorldTime = beforeNextDepTime;
|
|
}
|
|
FGTestApi::runForTime(1);
|
|
FGTestApi::adjustSimulationWorldTime(++this->currentWorldTime);
|
|
}
|
|
lastLeg = aiAircraft->GetFlightPlan()->getLeg();
|
|
snprintf(buffer, sizeof(buffer), "AI Leg %d Callsign %s Iteration %d", lastLeg, aiAircraft->getCallSign().c_str(), iteration);
|
|
if (sglog().get_log_priority() <= SG_DEBUG) {
|
|
FGTestApi::writeGeodsToKML(buffer, geods);
|
|
}
|
|
geods.clear();
|
|
csvFile.close();
|
|
return aiAircraft;
|
|
}
|
|
|
|
std::string TrafficTests::getTimeString(int timeOffset)
|
|
{
|
|
char ret[11];
|
|
time_t rawtime = globals->get_time_params()->get_cur_time();
|
|
rawtime = rawtime + timeOffset;
|
|
tm* timeinfo = gmtime(&rawtime);
|
|
strftime(ret, 11, "%w/%H:%M:%S", timeinfo);
|
|
return ret;
|
|
}
|