VK1ET : More Decoding of DF-17 ground reports
Extend the DF-17 CPR decoding to use User Lat/Lon for ground positions. Also start implementing a bFlags structure variable to indicate which fields in the mm and a data structures contain valid values.
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cc464b0a34
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52
dump1090.c
52
dump1090.c
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@ -105,6 +105,10 @@
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#define MODES_USER_LATLON_VALID (1<<0)
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#define MODES_ACFLAGS_LATLON_VALID (1<<0) // Aircraft Lat/Lon is known
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#define MODES_ACFLAGS_AOG (1<<9) // Aircraft is On the Ground
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#define MODES_ACFLAGS_LATLON_REL_OK (1<<15) // Indicates it's OK to do a relative CPR
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#define MODES_SBS_LAT_LONG_FRESH (1<<0)
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#define MODES_DEBUG_DEMOD (1<<0)
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@ -147,7 +151,7 @@ struct aircraft {
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char flight[16]; // Flight number
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unsigned char signalLevel[8]; // Last 8 Signal Amplitudes
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int altitude; // Altitude
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int speed; // Velocity computed from EW and NS components
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int speed; // Velocity
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int track; // Angle of flight
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time_t seen; // Time at which the last packet was received
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time_t seenLatLon; // Time at which the last lat long was calculated
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@ -165,6 +169,7 @@ struct aircraft {
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int even_cprlat;
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int even_cprlon;
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double lat, lon; // Coordinated obtained from CPR encoded data
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int bFlags; // Flags related to valid fields in this structure
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int sbsflags;
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uint64_t odd_cprtime, even_cprtime;
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struct aircraft *next; // Next aircraft in our linked list
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@ -304,7 +309,9 @@ struct modesMessage {
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int modeA; // 13 bits identity (Squawk).
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// Fields used by multiple message types.
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int altitude, unit;
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int altitude;
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int unit;
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int bFlags; // Flags related to fields in this structure
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};
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void interactiveShowData(void);
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@ -2424,8 +2431,16 @@ void decodeCPR(struct aircraft *a, int fflag, int surface) {
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double rlat0 = AirDlat0 * (cprModFunction(j,60) + lat0 / 131072);
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double rlat1 = AirDlat1 * (cprModFunction(j,59) + lat1 / 131072);
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if (rlat0 >= 270) rlat0 -= 360;
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if (rlat1 >= 270) rlat1 -= 360;
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if (surface) {
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// If we're on the ground, make sure we have our receiver base station Lat/Lon
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if (0 == (Modes.bUserFlags & MODES_USER_LATLON_VALID))
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{return;}
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rlat0 += floor(Modes.fUserLat / 90.0) * 90.0; // Move from 1st quadrant to our quadrant
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rlat1 += floor(Modes.fUserLat / 90.0) * 90.0;
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} else {
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if (rlat0 >= 270) rlat0 -= 360;
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if (rlat1 >= 270) rlat1 -= 360;
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}
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// Check that both are in the same latitude zone, or abort.
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if (cprNLFunction(rlat0) != cprNLFunction(rlat1)) return;
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@ -2444,10 +2459,16 @@ void decodeCPR(struct aircraft *a, int fflag, int surface) {
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a->lon = cprDlonFunction(rlat0, 0, surface) * (cprModFunction(m, ni)+lon0/131072);
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a->lat = rlat0;
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}
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if (a->lon > 180) a->lon -= 360;
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if (surface) {
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a->lon += floor(Modes.fUserLon / 90.0) * 90.0; // Move from 1st quadrant to our quadrant
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} else if (a->lon > 180) {
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a->lon -= 360;
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}
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a->seenLatLon = a->seen;
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a->timestampLatLon = a->timestamp;
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a->bFlags |= (MODES_ACFLAGS_LATLON_VALID | MODES_ACFLAGS_LATLON_REL_OK);
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a->sbsflags |= MODES_SBS_LAT_LONG_FRESH;
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}
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@ -2469,13 +2490,15 @@ int decodeCPRrelative(struct aircraft *a, int fflag, int surface, double latr, d
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double rlon, rlat;
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int j,m;
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// If not passed a lat/long, we must be using aircraft relative
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if ( (latr == 0) && (lonr == 0) ) {
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if (a->bFlags & MODES_ACFLAGS_LATLON_REL_OK) { // Ok to try aircraft relative first
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latr = a->lat;
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lonr = a->lon;
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}
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if ( (latr == 0) && (lonr == 0) )
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} else if (Modes.bUserFlags & MODES_USER_LATLON_VALID) { // Try ground station relative next
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latr = Modes.fUserLat;
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lonr = Modes.fUserLon;
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} else {
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return (-1); // Exit with error - can't do relative if we don't have ref.
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}
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if (fflag) { // odd
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AirDlat = (surface ? 90.0 : 360.0) / 59.0;
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@ -2495,8 +2518,8 @@ int decodeCPRrelative(struct aircraft *a, int fflag, int surface, double latr, d
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// Check to see that answer is reasonable - ie no more than 1/2 cell away
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if (fabs(rlat - a->lat) > (AirDlat/2)) {
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a->lat = a->lon = 0; // This will cause a quick exit next time if no global has been done
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return (-1); // Time to give up - Latitude error
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a->bFlags &= ~MODES_ACFLAGS_LATLON_REL_OK; // This will cause a quick exit next time if no global has been done
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return (-1); // Time to give up - Latitude error
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}
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// Compute the Longitude Index "m"
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@ -2508,8 +2531,8 @@ int decodeCPRrelative(struct aircraft *a, int fflag, int surface, double latr, d
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// Check to see that answer is reasonable - ie no more than 1/2 cell away
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if (fabs(rlon - a->lon) > (AirDlon/2)) {
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a->lat = a->lon = 0; // This will cause a quick exit next time if no global has been done
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return (-1); // Time to give up - Longitude error
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a->bFlags &= ~MODES_ACFLAGS_LATLON_REL_OK; // This will cause a quick exit next time if no global has been done
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return (-1); // Time to give up - Longitude error
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}
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a->lat = rlat;
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@ -2517,6 +2540,7 @@ int decodeCPRrelative(struct aircraft *a, int fflag, int surface, double latr, d
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a->seenLatLon = a->seen;
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a->timestampLatLon = a->timestamp;
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a->bFlags |= (MODES_ACFLAGS_LATLON_VALID | MODES_ACFLAGS_LATLON_REL_OK);
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a->sbsflags |= MODES_SBS_LAT_LONG_FRESH;
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return (0);
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@ -3167,7 +3191,7 @@ char *aircraftsToJson(int *len) {
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speed = (int) (speed * 1.852);
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}
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if (a->lat != 0 && a->lon != 0) {
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if (a->bFlags & MODES_ACFLAGS_LATLON_VALID) {
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l = snprintf(p,buflen,
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"{\"hex\":\"%06x\", \"flight\":\"%s\", \"lat\":%f, "
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"\"lon\":%f, \"altitude\":%d, \"track\":%d, "
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