# include <config.h>
#endif
+#include <boost/foreach.hpp>
+#include <algorithm>
+
#include <simgear/debug/logstream.hxx>
-#include <simgear/misc/sgstream.hxx>
#include <simgear/math/sg_geodesy.hxx>
+#include <simgear/sg_inlines.h>
#include "navlist.hxx"
+#include <Airports/runways.hxx>
-// Return true if the nav record matches the type
-static bool isTypeMatch(const FGNavRecord* n, fg_nav_types type)
-{
- if (type == FG_NAV_ANY) return true;
- return type == n->type();
-}
+using std::string;
+namespace { // anonymous
+class NavRecordDistanceSortPredicate
+{
+public:
+ NavRecordDistanceSortPredicate( const SGGeod & position ) :
+ _position(SGVec3d::fromGeod(position)) {}
+
+ bool operator()( const nav_rec_ptr & n1, const nav_rec_ptr & n2 )
+ {
+ if( n1 == NULL || n2 == NULL ) return false;
+ return distSqr(n1->cart(), _position) < distSqr(n2->cart(), _position);
+ }
+private:
+ SGVec3d _position;
+
+};
+
+} // of anonymous namespace
// FGNavList ------------------------------------------------------------------
+
+FGNavList::TypeFilter::TypeFilter(const FGPositioned::Type type)
+{
+ if (type == FGPositioned::INVALID) {
+ _mintype = FGPositioned::VOR;
+ _maxtype = FGPositioned::GS;
+ } else {
+ _mintype = _maxtype = type;
+ }
+}
+
+
FGNavList::FGNavList( void )
{
}
FGNavList::~FGNavList( void )
{
- navaids_by_tile.erase( navaids_by_tile.begin(), navaids_by_tile.end() );
nav_list_type navlist = navaids.begin()->second;
navaids.erase( navaids.begin(), navaids.end() );
}
// since we're using an SGSharedPointer
nav_list_type navlist = navaids.begin()->second;
navaids.erase( navaids.begin(), navaids.end() );
- navaids_by_tile.erase( navaids_by_tile.begin(), navaids_by_tile.end() );
- ident_navaids.erase( ident_navaids.begin(), ident_navaids.end() );
-
return true;
}
-
-// real add a marker beacon
-static void real_add( nav_map_type &navmap, const int master_index,
- FGNavRecord *n )
-{
- navmap[master_index].push_back( n );
-}
-
-
-// front end for add a marker beacon
-static void tile_add( nav_map_type &navmap, FGNavRecord *n )
-{
- double diff = 0;
-
- double lon = n->get_lon();
- double lat = n->get_lat();
-
- int lonidx = (int)lon;
- diff = lon - (double)lonidx;
- if ( (lon < 0.0) && (fabs(diff) > SG_EPSILON) ) {
- lonidx -= 1;
- }
- double lonfrac = lon - (double)lonidx;
- lonidx += 180;
-
- int latidx = (int)lat;
- diff = lat - (double)latidx;
- if ( (lat < 0.0) && (fabs(diff) > SG_EPSILON) ) {
- latidx -= 1;
- }
- double latfrac = lat - (double)latidx;
- latidx += 90;
-
- int master_index = lonidx * 1000 + latidx;
- // cout << "lonidx = " << lonidx << " latidx = " << latidx << " ";
- // cout << "Master index = " << master_index << endl;
-
- // add to the actual bucket
- real_add( navmap, master_index, n );
-
- // if we are close to the edge, add to adjacent buckets so we only
- // have to search one bucket at run time
-
- // there are 8 cases since there are 8 adjacent tiles
-
- if ( lonfrac < 0.2 ) {
- real_add( navmap, master_index - 1000, n );
- if ( latfrac < 0.2 ) {
- real_add( navmap, master_index - 1000 - 1, n );
- } else if ( latfrac > 0.8 ) {
- real_add( navmap, master_index - 1000 + 1, n );
- }
- } else if ( lonfrac > 0.8 ) {
- real_add( navmap, master_index + 1000, n );
- if ( latfrac < 0.2 ) {
- real_add( navmap, master_index + 1000 - 1, n );
- } else if ( latfrac > 0.8 ) {
- real_add( navmap, master_index + 1000 + 1, n );
- }
- } else if ( latfrac < 0.2 ) {
- real_add( navmap, master_index - 1, n );
- } else if ( latfrac > 0.8 ) {
- real_add( navmap, master_index + 1, n );
- }
-}
-
-
// add an entry to the lists
bool FGNavList::add( FGNavRecord *n )
{
navaids[n->get_freq()].push_back(n);
- ident_navaids[n->get_ident()].push_back(n);
- tile_add( navaids_by_tile, n );
return true;
}
-FGNavRecord *FGNavList::findByFreq( double freq, double lon, double lat, double elev )
+FGNavRecord *FGNavList::findByFreq( double freq, const SGGeod& position)
{
const nav_list_type& stations = navaids[(int)(freq*100.0 + 0.5)];
-
- SGGeod geod = SGGeod::fromRadM(lon, lat, elev);
- SGVec3d aircraft = SGVec3d::fromGeod(geod);
SG_LOG( SG_INSTR, SG_DEBUG, "findbyFreq " << freq << " size " << stations.size() );
-
- return findNavFromList( aircraft, stations );
+ return findNavFromList( position, stations );
}
-
-FGNavRecord *FGNavList::findByIdent( const char* ident,
- const double lon, const double lat )
+nav_list_type FGNavList::findAllByFreq( double freq, const SGGeod& position, const FGPositioned::Type type)
{
- const nav_list_type& stations = ident_navaids[ident];
- SGGeod geod = SGGeod::fromRad(lon, lat);
- SGVec3d aircraft = SGVec3d::fromGeod(geod);
- return findNavFromList( aircraft, stations );
+ nav_list_type stations;
+ TypeFilter filter(type);
+
+ BOOST_FOREACH(nav_rec_ptr nav, navaids[(int)(freq*100.0 + 0.5)]) {
+ if (filter.pass(nav.ptr())) {
+ stations.push_back(nav);
+ }
+ }
+
+ NavRecordDistanceSortPredicate sortPredicate( position );
+ std::sort( stations.begin(), stations.end(), sortPredicate );
+ return stations;
}
-
-
-// Given an Ident and optional freqency, return the first matching
+// Given an Ident and optional frequency, return the first matching
// station.
-FGNavRecord *FGNavList::findByIdentAndFreq( const char* ident, const double freq )
+const nav_list_type FGNavList::findByIdentAndFreq(const string& ident, const double freq, const FGPositioned::Type type )
{
- nav_list_type stations = ident_navaids[ident];
- SG_LOG( SG_INSTR, SG_DEBUG, "findByIdent " << ident<< " size " << stations.size() );
- if ( freq > 0.0 ) {
- // sometimes there can be duplicated idents. If a freq is
- // specified, use it to refine the search.
- int f = (int)(freq*100.0 + 0.5);
- nav_list_const_iterator it, end = stations.end();
- for ( it = stations.begin(); it != end; ++it ) {
- if ( f == (*it)->get_freq() ) {
- return (*it);
- }
- }
- } else if (!stations.empty()) {
- return stations[0];
+ FGPositionedRef cur;
+ TypeFilter filter(type);
+ nav_list_type reply;
+
+ cur = FGPositioned::findNextWithPartialId(cur, ident, &filter);
+
+ int f = (int)(freq*100.0 + 0.5);
+ while (cur) {
+ FGNavRecord* nav = static_cast<FGNavRecord*>(cur.ptr());
+ if ( f <= 0.0 || nav->get_freq() == f) {
+ reply.push_back( nav );
}
+
+ cur = FGPositioned::findNextWithPartialId(cur, ident, &filter);
+ }
- return NULL;
+ return reply;
}
-// LOC, ILS, GS, and DME antenna's could potentially be
-// installed at the opposite end of the runway. So it's not
-// enough to simply find the closest antenna with the right
-// frequency. We need the closest antenna with the right
-// frequency that is most oriented towards us. (We penalize
-// stations that are facing away from us by adding 5000 meters
-// which is further than matching stations would ever be
-// placed from each other. (Do the expensive check only for
-// directional atennas and only when there is a chance it is
-// the closest station.)
-
-static bool penaltyForNav(FGNavRecord* aNav, const SGVec3d &aPos)
+// Given an Ident and optional frequency and type ,
+// return a list of matching stations sorted by distance to the given position
+const nav_list_type FGNavList::findByIdentAndFreq( const SGGeod & position,
+ const std::string& ident, const double freq, const FGPositioned::Type type )
{
- switch (aNav->type()) {
- case FGPositioned::ILS:
- case FGPositioned::LOC:
- case FGPositioned::GS:
-// FIXME
-// case FGPositioned::DME: we can't get the heading for a DME transmitter, oops
- break;
- default:
- return false;
- }
-
- double hdg_deg = 0.0;
- if (aNav->type() == FGPositioned::GS) {
- int tmp = (int)(aNav->get_multiuse() / 1000.0);
- hdg_deg = aNav->get_multiuse() - (tmp * 1000);
- } else {
- hdg_deg = aNav->get_multiuse();
+ nav_list_type reply = findByIdentAndFreq( ident, freq, type );
+ NavRecordDistanceSortPredicate sortPredicate( position );
+ std::sort( reply.begin(), reply.end(), sortPredicate );
+
+ return reply;
+}
+
+// discount navids if they conflict with another on the same frequency
+// this only applies to navids associated with opposite ends of a runway,
+// with matching frequencies.
+static bool navidUsable(FGNavRecord* aNav, const SGGeod &aircraft)
+{
+ FGRunway* r(aNav->runway());
+ if (!r || !r->reciprocalRunway()) {
+ return true;
}
- double az1 = 0.0, az2 = 0.0, s = 0.0;
- SGGeod geod = SGGeod::fromCart(aPos);
- geo_inverse_wgs_84( geod, aNav->geod(), &az1, &az2, &s);
- az1 = az1 - hdg_deg;
+// check if the runway frequency is paired
+ FGNavRecord* locA = r->ILS();
+ FGNavRecord* locB = r->reciprocalRunway()->ILS();
- if ( az1 > 180.0) az1 -= 360.0;
- if ( az1 < -180.0) az1 += 360.0;
+ if (!locA || !locB || (locA->get_freq() != locB->get_freq())) {
+ return true; // not paired, ok
+ }
- return fabs(az1) > 90.0;
+// okay, both ends have an ILS, and they're paired. We need to select based on
+// aircraft position. What we're going to use is *runway* (not navid) position,
+// ie whichever runway end we are closer too. This makes back-course / missed
+// approach behaviour incorrect, but that's the price we accept.
+ double crs = SGGeodesy::courseDeg(aircraft, r->geod());
+ double hdgDiff = crs - r->headingDeg();
+ SG_NORMALIZE_RANGE(hdgDiff, -180.0, 180.0);
+ return (fabs(hdgDiff) < 90.0);
}
-// Given a point and a list of stations, return the closest one to the
-// specified point.
-FGNavRecord *FGNavList::findNavFromList( const SGVec3d &aircraft,
- const nav_list_type &stations )
+// Given a point and a list of stations, return the closest one to
+// the specified point.
+FGNavRecord* FGNavList::findNavFromList( const SGGeod &aircraft,
+ const nav_list_type &stations )
{
FGNavRecord *nav = NULL;
double d2; // in meters squared
double min_dist
= FG_NAV_MAX_RANGE*SG_NM_TO_METER*FG_NAV_MAX_RANGE*SG_NM_TO_METER;
-
+ SGVec3d aircraftCart = SGVec3d::fromGeod(aircraft);
+
nav_list_const_iterator it;
nav_list_const_iterator end = stations.end();
// find the closest station within a sensible range (FG_NAV_MAX_RANGE)
for ( it = stations.begin(); it != end; ++it ) {
FGNavRecord *station = *it;
- // cout << "testing " << current->get_ident() << endl;
- d2 = distSqr(station->get_cart(), aircraft);
- if ( d2 < min_dist && penaltyForNav(station, aircraft))
- {
- double dist = sqrt(d2);
- d2 = (dist + 5000) * (dist + 5000);
+ d2 = distSqr(station->cart(), aircraftCart);
+ if ( d2 > min_dist || !navidUsable(station, aircraft)) {
+ continue;
}
- if ( d2 < min_dist ) {
- min_dist = d2;
- nav = station;
- }
+ min_dist = d2;
+ nav = station;
}
return nav;
}
-
-// returns the closest entry to the give lon/lat/elev
-FGNavRecord *FGNavList::findClosest( double lon_rad, double lat_rad,
- double elev_m, fg_nav_types type)
-{
- FGNavRecord *result = NULL;
- double diff;
-
- double lon_deg = lon_rad * SG_RADIANS_TO_DEGREES;
- double lat_deg = lat_rad * SG_RADIANS_TO_DEGREES;
- int lonidx = (int)lon_deg;
- diff = lon_deg - (double)lonidx;
- if ( (lon_deg < 0.0) && (fabs(diff) > SG_EPSILON) ) {
- lonidx -= 1;
- }
- lonidx += 180;
-
- int latidx = (int)lat_deg;
- diff = lat_deg - (double)latidx;
- if ( (lat_deg < 0.0) && (fabs(diff) > SG_EPSILON) ) {
- latidx -= 1;
- }
- latidx += 90;
-
- int master_index = lonidx * 1000 + latidx;
-
- const nav_list_type& navs = navaids_by_tile[ master_index ];
- // cout << "Master index = " << master_index << endl;
- // cout << "beacon search length = " << beacons.size() << endl;
-
- nav_list_const_iterator current = navs.begin();
- nav_list_const_iterator last = navs.end();
-
- SGGeod geod = SGGeod::fromRadM(lon_rad, lat_rad, elev_m);
- SGVec3d aircraft = SGVec3d::fromGeod(geod);
-
- double min_dist = 999999999.0;
-
- for ( ; current != last ; ++current ) {
- if(isTypeMatch(*current, type)) {
- // cout << " testing " << (*current)->get_ident() << endl;
-
- double d = distSqr((*current)->get_cart(), aircraft);
- // cout << " distance = " << d << " ("
- // << FG_ILS_DEFAULT_RANGE * SG_NM_TO_METER
- // * FG_ILS_DEFAULT_RANGE * SG_NM_TO_METER
- // << ")" << endl;
-
- // cout << " range = " << sqrt(d) << endl;
-
- if ( d < min_dist ) {
- min_dist = d;
- result = (*current);
- }
- }
- }
-
- // cout << "lon = " << lon << " lat = " << lat
- // << " closest beacon = " << sqrt( min_dist ) << endl;
-
- return result;
-}
-
// Given a frequency, return the first matching station.
FGNavRecord *FGNavList::findStationByFreq( double freq )
{