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flightgear/src/Navaids/ilslist.cxx

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// ilslist.cxx -- ils management class
//
// Written by Curtis Olson, started April 2000.
//
// Copyright (C) 2000 Curtis L. Olson - curt@flightgear.org
//
// This program is free software; you can redistribute it and/or
// modify it under the terms of the GNU General Public License as
// published by the Free Software Foundation; either version 2 of the
// License, or (at your option) any later version.
//
// This program is distributed in the hope that it will be useful, but
// WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
// General Public License for more details.
//
// You should have received a copy of the GNU General Public License
// along with this program; if not, write to the Free Software
// Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
//
// $Id$
#include <simgear/debug/logstream.hxx>
#include <simgear/misc/fgstream.hxx>
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#include <simgear/math/sg_geodesy.hxx>
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#include "mkrbeacons.hxx"
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#include "ilslist.hxx"
FGILSList *current_ilslist;
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// Constructor
FGILSList::FGILSList( void ) {
}
// Destructor
FGILSList::~FGILSList( void ) {
}
// load the navaids and build the map
bool FGILSList::init( FGPath path ) {
FGILS ils;
ilslist.erase( ilslist.begin(), ilslist.end() );
fg_gzifstream in( path.str() );
if ( !in.is_open() ) {
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SG_LOG( SG_GENERAL, SG_ALERT, "Cannot open file: " << path.str() );
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exit(-1);
}
// read in each line of the file
in >> skipeol;
in >> skipcomment;
#ifdef __MWERKS__
char c = 0;
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while ( in.get(c) && c != '\0' && ils.get_ilstype() != '[' ) {
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in.putback(c);
in >> ils;
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if ( ils.get_ilstype() != '[' ) {
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ilslist[ils.get_locfreq()].push_back(ils);
}
in >> skipcomment;
}
#else
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double min = 1000000.0;
double max = 0.0;
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while ( ! in.eof() && ils.get_ilstype() != '[' ) {
in >> ils;
/* cout << "id = " << n.get_ident() << endl;
cout << " type = " << n.get_type() << endl;
cout << " lon = " << n.get_lon() << endl;
cout << " lat = " << n.get_lat() << endl;
cout << " elev = " << n.get_elev() << endl;
cout << " freq = " << n.get_freq() << endl;
cout << " range = " << n.get_range() << endl; */
if ( ils.get_ilstype() != '[' ) {
ilslist[ils.get_locfreq()].push_back(ils);
}
in >> skipcomment;
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if ( ils.get_locfreq() < min ) {
min = ils.get_locfreq();
}
if ( ils.get_locfreq() > max ) {
max = ils.get_locfreq();
}
// update the marker beacon list
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if ( fabs(ils.get_omlon()) > SG_EPSILON ||
fabs(ils.get_omlat()) > SG_EPSILON ) {
current_beacons->add( ils.get_omlon(), ils.get_omlat(),
ils.get_gselev(), FGBeacon::OUTER );
}
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if ( fabs(ils.get_mmlon()) > SG_EPSILON ||
fabs(ils.get_mmlat()) > SG_EPSILON ) {
current_beacons->add( ils.get_mmlon(), ils.get_mmlat(),
ils.get_gselev(), FGBeacon::MIDDLE );
}
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if ( fabs(ils.get_imlon()) > SG_EPSILON ||
fabs(ils.get_imlat()) > SG_EPSILON ) {
current_beacons->add( ils.get_imlon(), ils.get_imlat(),
ils.get_gselev(), FGBeacon::INNER );
}
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}
// cout << "min freq = " << min << endl;
// cout << "max freq = " << max << endl;
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#endif
return true;
}
// query the database for the specified frequency, lon and lat are in
// degrees, elev is in meters
bool FGILSList::query( double lon, double lat, double elev, double freq,
FGILS *ils )
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{
ils_list_type stations = ilslist[(int)(freq*100.0 + 0.5)];
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ils_list_iterator current = stations.begin();
ils_list_iterator last = stations.end();
// double az1, az2, s;
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Point3D aircraft = sgGeodToCart( Point3D(lon, lat, elev) );
Point3D station;
double d;
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for ( ; current != last ; ++current ) {
// cout << " testing " << current->get_locident() << endl;
station = Point3D(current->get_x(),
current->get_y(),
current->get_z());
// cout << " aircraft = " << aircraft << " station = " << station
// << endl;
d = aircraft.distance3Dsquared( station );
// cout << " distance = " << d << " ("
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// << FG_ILS_DEFAULT_RANGE * SG_NM_TO_METER
// * FG_ILS_DEFAULT_RANGE * SG_NM_TO_METER
// << ")" << endl;
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// cout << " dist = " << s << endl;
// match up to twice the published range so we can model
// reduced signal strength
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if ( d < (2* FG_ILS_DEFAULT_RANGE * SG_NM_TO_METER
* 2 * FG_ILS_DEFAULT_RANGE * SG_NM_TO_METER) ) {
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*ils = *current;
return true;
}
}
return false;
}