+bool FGInterface::prepare_ground_cache_ft(double ref_time, const double pt[3],
+ double rad)
+{
+ // Convert units and do the real work.
+ sgdVec3 pt_ft;
+ sgdScaleVec3( pt_ft, pt, SG_FEET_TO_METER );
+ return ground_cache.prepare_ground_cache(ref_time, pt_ft, rad*SG_FEET_TO_METER);
+}
+
+bool
+FGInterface::is_valid_m(double *ref_time, double pt[3], double *rad)
+{
+ return ground_cache.is_valid(ref_time, pt, rad);
+}
+
+bool FGInterface::is_valid_ft(double *ref_time, double pt[3], double *rad)
+{
+ // Convert units and do the real work.
+ bool found_ground = ground_cache.is_valid(ref_time, pt, rad);
+ sgdScaleVec3(pt, SG_METER_TO_FEET);
+ *rad *= SG_METER_TO_FEET;
+ return found_ground;
+}
+
+double
+FGInterface::get_cat_m(double t, const double pt[3],
+ double end[2][3], double vel[2][3])
+{
+ return ground_cache.get_cat(t, pt, end, vel);
+}
+
+double
+FGInterface::get_cat_ft(double t, const double pt[3],
+ double end[2][3], double vel[2][3])
+{
+ // Convert units and do the real work.
+ sgdVec3 pt_m;
+ sgdScaleVec3( pt_m, pt, SG_FEET_TO_METER );
+ double dist = ground_cache.get_cat(t, pt_m, end, vel);
+ for (int k=0; k<2; ++k) {
+ sgdScaleVec3( end[k], SG_METER_TO_FEET );
+ sgdScaleVec3( vel[k], SG_METER_TO_FEET );
+ }
+ return dist*SG_METER_TO_FEET;
+}
+
+bool
+FGInterface::get_agl_m(double t, const double pt[3],
+ double contact[3], double normal[3], double vel[3],
+ int *type, double *loadCapacity,
+ double *frictionFactor, double *agl)
+{
+ return ground_cache.get_agl(t, pt, 2.0, contact, normal, vel, type,
+ loadCapacity, frictionFactor, agl);
+}
+
+bool
+FGInterface::get_agl_ft(double t, const double pt[3],
+ double contact[3], double normal[3], double vel[3],
+ int *type, double *loadCapacity,
+ double *frictionFactor, double *agl)
+{
+ // Convert units and do the real work.
+ sgdVec3 pt_m;
+ sgdScaleVec3( pt_m, pt, SG_FEET_TO_METER );
+ bool ret = ground_cache.get_agl(t, pt_m, 2.0, contact, normal, vel,
+ type, loadCapacity, frictionFactor, agl);
+ // Convert units back ...
+ sgdScaleVec3( contact, SG_METER_TO_FEET );
+ sgdScaleVec3( vel, SG_METER_TO_FEET );
+ *agl *= SG_METER_TO_FEET;
+ // FIXME: scale the load limit to something in the english unit system.
+ // Be careful with the DBL_MAX which is returned by default.
+ return ret;
+}
+
+bool
+FGInterface::get_agl_m(double t, const double pt[3], double max_altoff,
+ double contact[3], double normal[3], double vel[3],
+ int *type, double *loadCapacity,
+ double *frictionFactor, double *agl)
+{
+ return ground_cache.get_agl(t, pt, max_altoff, contact, normal, vel, type,
+ loadCapacity, frictionFactor, agl);
+}
+
+bool
+FGInterface::get_agl_ft(double t, const double pt[3], double max_altoff,
+ double contact[3], double normal[3], double vel[3],
+ int *type, double *loadCapacity,
+ double *frictionFactor, double *agl)
+{
+ // Convert units and do the real work.
+ sgdVec3 pt_m;
+ sgdScaleVec3( pt_m, pt, SG_FEET_TO_METER );
+ bool ret = ground_cache.get_agl(t, pt_m, SG_FEET_TO_METER * max_altoff,
+ contact, normal, vel,
+ type, loadCapacity, frictionFactor, agl);
+ // Convert units back ...
+ sgdScaleVec3( contact, SG_METER_TO_FEET );
+ sgdScaleVec3( vel, SG_METER_TO_FEET );
+ *agl *= SG_METER_TO_FEET;
+ // FIXME: scale the load limit to something in the english unit system.
+ // Be careful with the DBL_MAX which is returned by default.
+ return ret;
+}
+
+
+double
+FGInterface::get_groundlevel_m(double lat, double lon, double alt)
+{
+ // First compute the sea level radius,
+ sgdVec3 pos, cpos;
+ sgGeodToCart(lat, lon, 0, pos);
+ double slr = sgdLengthVec3(pos);
+ // .. then the cartesian position of the given lat/lon/alt.
+ sgGeodToCart(lat, lon, alt, pos);
+
+ // FIXME: how to handle t - ref_time differences ???
+ double ref_time, radius;
+ // Prepare the ground cache for that position.
+ if (!is_valid_m(&ref_time, cpos, &radius))
+ prepare_ground_cache_m(ref_time, pos, 10);
+ else if (radius*radius <= sgdDistanceSquaredVec3(pos, cpos))
+ prepare_ground_cache_m(ref_time, pos, radius);
+
+ double contact[3], normal[3], vel[3], lc, ff, agl;
+ int type;
+ get_agl_m(ref_time, pos, 2.0, contact, normal, vel, &type, &lc, &ff, &agl);
+
+ return sgdLengthVec3(contact) - slr;
+}
+
+bool
+FGInterface::caught_wire_m(double t, const double pt[4][3])
+{
+ return ground_cache.caught_wire(t, pt);
+}
+
+bool
+FGInterface::caught_wire_ft(double t, const double pt[4][3])
+{
+ // Convert units and do the real work.
+ double pt_m[4][3];
+ for (int i=0; i<4; ++i)
+ sgdScaleVec3(pt_m[i], pt[i], SG_FEET_TO_METER);
+
+ return ground_cache.caught_wire(t, pt_m);
+}
+
+bool
+FGInterface::get_wire_ends_m(double t, double end[2][3], double vel[2][3])
+{
+ return ground_cache.get_wire_ends(t, end, vel);
+}
+
+bool
+FGInterface::get_wire_ends_ft(double t, double end[2][3], double vel[2][3])
+{
+ // Convert units and do the real work.
+ bool ret = ground_cache.get_wire_ends(t, end, vel);
+ for (int k=0; k<2; ++k) {
+ sgdScaleVec3( end[k], SG_METER_TO_FEET );
+ sgdScaleVec3( vel[k], SG_METER_TO_FEET );
+ }
+ return ret;
+}
+
+void
+FGInterface::release_wire(void)
+{
+ ground_cache.release_wire();
+}
+
+void fgToggleFDMdataLogging(void) {
+ cur_fdm_state->ToggleDataLogging();
+}