c5aa3ca0f1
Most subsystems are now created via the subsystem manager using the global subsystem registrations. The FGGlobals add_subsystem() and add_new_subsystem() methods have been removed as the subsystem manager addition and creation function interface now exceeds the functionality of these helper functions.
476 lines
13 KiB
C++
476 lines
13 KiB
C++
#include "config.h"
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#include "test_suite/dataStore.hxx"
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#include <ctime>
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#include "TestDataLogger.hxx"
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#include "testGlobals.hxx"
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#include <simgear/io/iostreams/sgstream.hxx>
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#if defined(HAVE_QT)
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#include <GUI/QtLauncher.hxx>
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#endif
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#include <Main/globals.hxx>
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#include <Main/options.hxx>
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#include <Main/util.hxx>
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#include <Main/FGInterpolator.hxx>
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#include <Main/locale.hxx>
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#include <Time/TimeManager.hxx>
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#include <simgear/structure/event_mgr.hxx>
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#include <simgear/timing/timestamp.hxx>
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#include <simgear/timing/sg_time.hxx>
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#include <simgear/math/sg_geodesy.hxx>
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#include <simgear/props/props_io.hxx>
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#include <Airports/airport.hxx>
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#include <Navaids/FlightPlan.hxx>
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#include <Navaids/waypoint.hxx>
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#include <Navaids/routePath.hxx>
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#include <Scripting/NasalSys.hxx>
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using namespace flightgear;
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namespace FGTestApi {
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bool global_loggingToKML = false;
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sg_ofstream global_kmlStream;
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bool global_lineStringOpen = false;
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namespace setUp {
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void initTestGlobals(const std::string& testName)
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{
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assert(globals == nullptr);
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globals = new FGGlobals;
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DataStore &data = DataStore::get();
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if (!data.getFGRoot().exists()) {
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data.findFGRoot("");
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}
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globals->set_fg_root(data.getFGRoot());
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// current dir
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SGPath homePath = SGPath::fromUtf8(FGBUILDDIR) / "test_home";
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if (!homePath.exists()) {
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(homePath / "dummyFile").create_dir(0755);
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}
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globals->set_fg_home(homePath);
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auto props = globals->get_props();
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props->setStringValue("sim/fg-home", homePath.utf8Str());
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// Activate headless mode.
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globals->set_headless(true);
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fgSetDefaults();
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auto t = globals->get_subsystem_mgr()->add<TimeManager>();
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t->bind();
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t->init(); // establish mag-var data
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/**
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* Both the event manager and subsystem manager are initialised by the
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* FGGlobals ctor, but only the subsystem manager is destroyed by the dtor.
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* Here the event manager is added to the subsystem manager so it can be
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* destroyed via the subsystem manager.
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*/
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globals->get_subsystem_mgr()->add("events", globals->get_event_mgr());
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// necessary to avoid asserts: mark FGLocale as initialized
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globals->get_locale()->selectLanguage({});
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}
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bool logPositionToKML(const std::string& testName)
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{
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// clear any previous state
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if (global_loggingToKML) {
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global_kmlStream.close();
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global_lineStringOpen = false;
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}
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SGPath p = SGPath::desktop() / (testName + ".kml");
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global_kmlStream.open(p);
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if (!global_kmlStream.is_open()) {
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SG_LOG(SG_GENERAL, SG_WARN, "unable to open:" << p);
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return false;
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}
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// pre-amble
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global_kmlStream << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
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"<kml xmlns=\"http://www.opengis.net/kml/2.2\">\n"
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"<Document>\n";
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// need more precision for doubles when specifying lat/lon, see
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// https://xkcd.com/2170/ :)
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global_kmlStream.precision(12);
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global_loggingToKML = true;
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return true;
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}
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bool logLinestringsToKML(const std::string& testName)
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{
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// clear any previous state
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if (global_loggingToKML) {
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global_kmlStream.close();
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global_lineStringOpen = false;
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}
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SGPath p = SGPath::desktop() / (testName + ".kml");
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global_kmlStream.open(p);
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if (!global_kmlStream.is_open()) {
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SG_LOG(SG_GENERAL, SG_WARN, "unable to open:" << p);
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return false;
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}
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// pre-amble
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global_kmlStream << "<?xml version=\"1.0\" encoding=\"UTF-8\"?>\n"
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"<kml xmlns=\"http://www.opengis.net/kml/2.2\">\n"
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"<Document>\n";
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// need more precision for doubles when specifying lat/lon, see
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// https://xkcd.com/2170/ :)
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global_kmlStream.precision(12);
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global_loggingToKML = false;
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return true;
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}
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void initStandardNasal(bool withCanvas)
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{
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fgInitAllowedPaths();
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auto nasalNode = globals->get_props()->getNode("nasal", true);
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// load loadpriority.xml, for default modules load order
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auto nasalLoadPriority = globals->get_props()->getNode("/sim/nasal-load-priority",true);
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readProperties(globals->get_fg_root() / "Nasal/loadpriority.xml", nasalLoadPriority);
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// set various props to reduce Nasal errors
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auto props = globals->get_props();
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props->setStringValue("sim/flight-model", "null");
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props->setStringValue("sim/aircraft", "test-suite-aircraft");
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props->setDoubleValue("sim/current-view/config/default-field-of-view-deg", 90.0);
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// ensure /sim/view/config exists
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props->setBoolValue("sim/view/config/foo", false);
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props->setBoolValue("sim/rendering/precipitation-gui-enable", false);
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props->setBoolValue("sim/rendering/precipitation-aircraft-enable", false);
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// disable various larger modules
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nasalNode->setBoolValue("canvas/enabled", withCanvas);
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nasalNode->setBoolValue("jetways/enabled", false);
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nasalNode->setBoolValue("jetways_edit/enabled", false);
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nasalNode->setBoolValue("local_weather/enabled", false);
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// Nasal needs the interpolator running
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globals->get_subsystem_mgr()->add<FGInterpolator>();
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// will be inited, since we already did that
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globals->get_subsystem_mgr()->add<FGNasalSys>();
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}
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void populateFPWithoutNasal(flightgear::FlightPlanRef f,
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const std::string& depICAO, const std::string& depRunway,
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const std::string& destICAO, const std::string& destRunway,
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const std::string& waypoints)
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{
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FGAirportRef depApt = FGAirport::getByIdent(depICAO);
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f->setDeparture(depApt->getRunwayByIdent(depRunway));
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FGAirportRef destApt = FGAirport::getByIdent(destICAO);
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f->setDestination(destApt->getRunwayByIdent(destRunway));
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// since we don't have the Nasal route-manager delegate, insert the
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// runway waypoints manually
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auto depRwy = new RunwayWaypt(f->departureRunway(), f);
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depRwy->setFlag(WPT_DEPARTURE);
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f->insertWayptAtIndex(depRwy, -1);
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for (auto ws : simgear::strutils::split(waypoints)) {
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WayptRef wpt = f->waypointFromString(ws);
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if (!wpt) {
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SG_LOG(SG_NAVAID, SG_ALERT, "No waypoint created for:" << ws);
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continue;
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}
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f->insertWayptAtIndex(wpt, -1);
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}
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auto destRwy = f->destinationRunway();
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f->insertWayptAtIndex(new BasicWaypt(destRwy->pointOnCenterline(-8 * SG_NM_TO_METER),
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destRwy->ident() + "-8", f), -1);
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f->insertWayptAtIndex(new RunwayWaypt(destRwy, f), -1);
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}
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void populateFPWithNasal(flightgear::FlightPlanRef f,
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const std::string& depICAO, const std::string& depRunway,
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const std::string& destICAO, const std::string& destRunway,
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const std::string& waypoints)
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{
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FGAirportRef depApt = FGAirport::getByIdent(depICAO);
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f->setDeparture(depApt->getRunwayByIdent(depRunway));
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FGAirportRef destApt = FGAirport::getByIdent(destICAO);
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f->setDestination(destApt->getRunwayByIdent(destRunway));
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// insert after the last departure waypoint
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int insertIndex = 1;
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for (auto ws : simgear::strutils::split(waypoints)) {
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WayptRef wpt = f->waypointFromString(ws);
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f->insertWayptAtIndex(wpt, insertIndex++);
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}
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}
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} // End of namespace setUp.
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void beginLineString(const std::string& ident)
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{
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global_lineStringOpen = true;
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global_kmlStream << "<Placemark>\n";
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if (!ident.empty()) {
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global_kmlStream << "<name>" << ident << "</name>\n";
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}
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global_kmlStream << "<LineString>\n";
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global_kmlStream << "<tessellate>1</tessellate>\n";
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global_kmlStream << "<coordinates>\n";
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}
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void logCoordinate(const SGGeod& pos)
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{
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if (!global_lineStringOpen) {
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beginLineString({});
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}
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global_kmlStream << pos.getLongitudeDeg() << "," << pos.getLatitudeDeg() << " " << endl;
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}
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void rawLogCoordinate(const SGGeod& pos)
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{
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global_kmlStream << pos.getLongitudeDeg() << "," << pos.getLatitudeDeg() << " " << endl;
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}
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void endCurrentLineString()
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{
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global_lineStringOpen = false;
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global_kmlStream <<
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"</coordinates>\n"
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"</LineString>\n"
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"</Placemark>\n" << endl;
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}
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void setPosition(const SGGeod& g)
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{
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if (global_loggingToKML) {
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if (global_lineStringOpen) {
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endCurrentLineString();
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}
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logCoordinate(g);
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}
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globals->get_props()->setDoubleValue("position/latitude-deg", g.getLatitudeDeg());
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globals->get_props()->setDoubleValue("position/longitude-deg", g.getLongitudeDeg());
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globals->get_props()->setDoubleValue("position/altitude-ft", g.getElevationFt());
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}
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const SGGeod getPosition()
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{
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return SGGeod::fromDegFt(
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globals->get_props()->getDoubleValue("position/latitude-deg"),
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globals->get_props()->getDoubleValue("position/longitude-deg"),
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globals->get_props()->getDoubleValue("position/altitude-ft"));
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}
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void setPositionAndStabilise(const SGGeod& g)
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{
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setPosition(g);
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for (int i=0; i<60; ++i) {
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globals->get_subsystem_mgr()->update(0.015);
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}
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}
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void runForTime(double t)
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{
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const int tickHz = 30;
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const double tickDuration = 1.0 / tickHz;
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int ticks = static_cast<int>(t * tickHz);
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assert(ticks > 0);
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const int logInterval = 0.5 * tickHz;
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int nextLog = 0;
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long startTime = globals->get_time_params()->get_cur_time();
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for (int t = 0; t < ticks; ++t) {
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globals->inc_sim_time_sec(tickDuration);
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globals->get_time_params()->update(globals->get_view_position(), startTime, t * tickDuration);
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globals->get_subsystem_mgr()->update(tickDuration);
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if (nextLog == 0) {
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if (global_loggingToKML) {
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logCoordinate(globals->get_aircraft_position());
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}
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if (DataLogger::isActive()) {
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DataLogger::instance()->writeRecord();
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}
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nextLog = logInterval;
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} else {
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nextLog--;
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}
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}
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}
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bool runForTimeWithCheck(double t, RunCheck check)
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{
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const int tickHz = 30;
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const double tickDuration = 1.0 / tickHz;
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int ticks = static_cast<int>(t * tickHz);
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assert(ticks > 0);
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const int logInterval = 0.5 * tickHz;
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int nextLog = 0;
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for (int t = 0; t < ticks; ++t) {
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globals->inc_sim_time_sec(tickDuration);
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globals->get_subsystem_mgr()->update(tickDuration);
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if (nextLog == 0) {
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if (global_loggingToKML) {
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logCoordinate(globals->get_aircraft_position());
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}
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if (DataLogger::isActive()) {
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DataLogger::instance()->writeRecord();
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}
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nextLog = logInterval;
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} else {
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nextLog--;
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}
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bool done = check();
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if (done) {
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if (global_loggingToKML) {
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endCurrentLineString();
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}
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return true;
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}
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}
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return false;
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}
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void adjustSimulationWorldTime(time_t desiredUnixTime)
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{
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int timeOffset = desiredUnixTime - time(nullptr);
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globals->get_props()->setIntValue("/sim/time/cur-time-override", 0);
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globals->get_props()->setIntValue("/sim/time/warp", timeOffset);
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globals->get_subsystem<TimeManager>()->update(0.0);
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}
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void writeFlightPlanToKML(flightgear::FlightPlanRef fp)
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{
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if (!global_loggingToKML)
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return;
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RoutePath rpath(fp);
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for (int i=0; i<fp->numLegs(); ++i) {
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SGGeodVec legPath = rpath.pathForIndex(i);
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auto wp = fp->legAtIndex(i)->waypoint();
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writeGeodsToKML("FP-leg-" + wp->ident(), legPath);
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SGGeod legWPPosition = wp->position();
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writePointToKML("WP " + wp->ident(), legWPPosition);
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}
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}
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void writeGeodsToKML(const std::string &label, const flightgear::SGGeodVec& geods)
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{
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if (global_lineStringOpen) {
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endCurrentLineString();
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}
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beginLineString(label);
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for (const auto& g : geods) {
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logCoordinate(g);
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}
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endCurrentLineString();
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}
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void writePointToKML(const std::string& ident, const SGGeod& pos)
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{
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global_kmlStream << "<Placemark>\n";
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global_kmlStream << "<name>" << ident << "</name>\n";
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global_kmlStream << "<Point>\n";
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global_kmlStream << "<coordinates>\n";
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rawLogCoordinate(pos);
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global_kmlStream << "</coordinates>\n";
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global_kmlStream << "</Point>\n";
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global_kmlStream << "</Placemark>\n";
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}
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bool executeNasal(const std::string& code)
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{
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auto nasal = globals->get_subsystem<FGNasalSys>();
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if (!nasal) {
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throw sg_exception("Nasal not available");
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}
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nasal->getAndClearErrorList();
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std::string output, parseErrors;
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bool ok = nasal->parseAndRunWithOutput(code, output, parseErrors);
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if (!parseErrors.empty()) {
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SG_LOG(SG_NASAL, SG_ALERT, "Errors running Nasal:" << parseErrors);
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return false;
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}
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return ok;
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}
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namespace tearDown {
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void shutdownTestGlobals()
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{
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// The QApplication instance must be destroyed before exit() begins, see
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// <https://bugreports.qt.io/browse/QTBUG-48709> (otherwise, segfault).
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#if defined(HAVE_QT)
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flightgear::shutdownQtApp();
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#endif
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delete globals;
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globals = nullptr;
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if (global_kmlStream) {
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if (global_lineStringOpen) {
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endCurrentLineString();
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}
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// post-amble
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global_kmlStream << "</Document>\n"
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"</kml>" << endl;
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global_kmlStream.close();
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global_loggingToKML = false;
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}
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}
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} // End of namespace tearDown.
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} // End of namespace FGTestApi.
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