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1 // flight.cxx -- a general interface to the various flight models
2 //
3 // Written by Curtis Olson, started May 1997.
4 //
5 // Copyright (C) 1997  Curtis L. Olson  - curt@infoplane.com
6 //
7 // This program is free software; you can redistribute it and/or
8 // modify it under the terms of the GNU General Public License as
9 // published by the Free Software Foundation; either version 2 of the
10 // License, or (at your option) any later version.
11 //
12 // This program is distributed in the hope that it will be useful, but
13 // WITHOUT ANY WARRANTY; without even the implied warranty of
14 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
15 // General Public License for more details.
16 //
17 // You should have received a copy of the GNU General Public License
18 // along with this program; if not, write to the Free Software
19 // Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
20 //
21 // $Id$
22
23
24 #include <stdio.h>
25
26 #include <plib/sg.h>
27
28 #include <simgear/constants.h>
29 #include <simgear/debug/logstream.hxx>
30 #include <simgear/math/sg_geodesy.hxx>
31 #include <simgear/timing/timestamp.hxx>
32
33 #include <Scenery/scenery.hxx>
34 #include <FDM/LaRCsim/ls_interface.h>
35 #include <Main/globals.hxx>
36 #include <Main/fg_props.hxx>
37
38 #include "flight.hxx"
39
40
41 // base_fdm_state is the internal state that is updated in integer
42 // multiples of "dt".  This leads to "jitter" with respect to the real
43 // world time, so we introduce cur_fdm_state which is extrapolated by
44 // the difference between sim time and real world time
45
46 FGInterface *cur_fdm_state = 0;
47 FGInterface base_fdm_state;
48
49 inline void init_vec(FG_VECTOR_3 vec) {
50     vec[0] = 0.0; vec[1] = 0.0; vec[2] = 0.0;
51 }
52
53 // Constructor
54 FGInterface::FGInterface()
55   : remainder(0)
56 {
57     _setup();
58 }
59
60 FGInterface::FGInterface( double dt )
61   : remainder(0)
62 {
63     _setup();
64 }
65
66 // Destructor
67 FGInterface::~FGInterface() {
68     // unbind();                   // FIXME: should be called explicitly
69 }
70
71
72 int
73 FGInterface::_calc_multiloop (double dt)
74 {
75   int hz = fgGetInt("/sim/model-hz");
76   int speedup = fgGetInt("/sim/speed-up");
77
78   dt += remainder;
79   remainder = 0;
80   double ml = dt * hz;
81   int multiloop = int(floor(ml));
82   remainder = (ml - multiloop) / hz;
83   return (multiloop * speedup);
84 }
85
86
87 /**
88  * Set default values for the state of the FDM.
89  *
90  * This method is invoked by the constructors.
91  */
92 void
93 FGInterface::_setup ()
94 {
95     inited = false;
96     bound = false;
97
98     init_vec( d_pilot_rp_body_v );
99     init_vec( d_cg_rp_body_v );
100     init_vec( f_body_total_v );
101     init_vec( f_local_total_v );
102     init_vec( f_aero_v );
103     init_vec( f_engine_v );
104     init_vec( f_gear_v );
105     init_vec( m_total_rp_v );
106     init_vec( m_total_cg_v );
107     init_vec( m_aero_v );
108     init_vec( m_engine_v );
109     init_vec( m_gear_v );
110     init_vec( v_dot_local_v );
111     init_vec( v_dot_body_v );
112     init_vec( a_cg_body_v );
113     init_vec( a_pilot_body_v );
114     init_vec( n_cg_body_v );
115     init_vec( n_pilot_body_v );
116     init_vec( omega_dot_body_v );
117     init_vec( v_local_v );
118     init_vec( v_local_rel_ground_v );
119     init_vec( v_local_airmass_v );
120     init_vec( v_local_rel_airmass_v );
121     init_vec( v_local_gust_v );
122     init_vec( v_wind_body_v );
123     init_vec( omega_body_v );
124     init_vec( omega_local_v );
125     init_vec( omega_total_v );
126     init_vec( euler_rates_v );
127     init_vec( geocentric_rates_v );
128     init_vec( geocentric_position_v );
129     init_vec( geodetic_position_v );
130     init_vec( euler_angles_v );
131     init_vec( d_cg_rwy_local_v );
132     init_vec( d_cg_rwy_rwy_v );
133     init_vec( d_pilot_rwy_local_v );
134     init_vec( d_pilot_rwy_rwy_v );
135     init_vec( t_local_to_body_m[0] );
136     init_vec( t_local_to_body_m[1] );
137     init_vec( t_local_to_body_m[2] );
138
139     mass=i_xx=i_yy=i_zz=i_xz=0;
140     nlf=0;
141     v_rel_wind=v_true_kts=v_rel_ground=v_inertial=0;
142     v_ground_speed=v_equiv=v_equiv_kts=0;
143     v_calibrated=v_calibrated_kts=0;
144     gravity=0;
145     centrifugal_relief=0;
146     alpha=beta=alpha_dot=beta_dot=0;
147     cos_alpha=sin_alpha=cos_beta=sin_beta=0;
148     cos_phi=sin_phi=cos_theta=sin_theta=cos_psi=sin_psi=0;
149     gamma_vert_rad=gamma_horiz_rad=0;
150     sigma=density=v_sound=mach_number=0;
151     static_pressure=total_pressure=impact_pressure=0;
152     dynamic_pressure=0;
153     static_temperature=total_temperature=0;
154     sea_level_radius=earth_position_angle=0;
155     runway_altitude=runway_latitude=runway_longitude=0;
156     runway_heading=0;
157     radius_to_rwy=0;
158     climb_rate=0;
159     sin_lat_geocentric=cos_lat_geocentric=0;
160     sin_latitude=cos_latitude=0;
161     sin_longitude=cos_longitude=0;
162     altitude_agl=0;
163     _acmodel = 0;
164 }
165
166 void
167 FGInterface::init () {}
168
169 /**
170  * Initialize the state of the FDM.
171  *
172  * Subclasses of FGInterface may do their own, additional initialization,
173  * but there is some that is common to all.  Normally, they should call
174  * this before they begin their own init to make sure the basic structures
175  * are set up properly.
176  */
177 void
178 FGInterface::common_init ()
179 {
180     SG_LOG( SG_FLIGHT, SG_INFO, "Start common FDM init" );
181
182     set_inited( true );
183
184 //     stamp();
185 //     set_remainder( 0 );
186
187     // linking in FGAircraft instance...
188     // FIXME: when using multiple instances, then there will be more than
189     // one model so get_aircraft_model will have to be indexed to the correct
190     // model.
191     _acmodel = globals->get_aircraft_model();
192
193     // Set initial position
194     SG_LOG( SG_FLIGHT, SG_INFO, "...initializing position..." );
195     set_Longitude( fgGetDouble("/position/longitude-deg")
196                    * SGD_DEGREES_TO_RADIANS );
197     set_Latitude( fgGetDouble("/position/latitude-deg")
198                   * SGD_DEGREES_TO_RADIANS );
199     double ground_elev_m = globals->get_scenery()->get_cur_elev();
200     double ground_elev_ft = ground_elev_m * SG_METER_TO_FEET;
201     _acmodel->get3DModel()->getFGLocation()->set_cur_elev_m( ground_elev_m );
202     _set_Runway_altitude ( ground_elev_ft );
203     if ( fgGetBool("/sim/startup/onground")
204          || fgGetDouble("/position/altitude-ft") < ground_elev_ft ) {
205         fgSetDouble("/position/altitude-ft", ground_elev_ft);
206     }
207     set_Altitude( fgGetDouble("/position/altitude-ft") );
208
209     // Set ground elevation
210     SG_LOG( SG_FLIGHT, SG_INFO,
211             "...initializing ground elevation to " << ground_elev_ft
212             << "ft..." );
213
214     // Set sea-level radius
215     SG_LOG( SG_FLIGHT, SG_INFO, "...initializing sea-level radius..." );
216     SG_LOG( SG_FLIGHT, SG_INFO, " lat = "
217             << fgGetDouble("/position/latitude-deg")
218             << " alt = " << fgGetDouble("/position/altitude-ft") );
219     double sea_level_radius_meters;
220     double lat_geoc;
221     sgGeodToGeoc( fgGetDouble("/position/latitude-deg")
222                     * SGD_DEGREES_TO_RADIANS,
223                   fgGetDouble("/position/altitude-ft") * SG_FEET_TO_METER,
224                   &sea_level_radius_meters, &lat_geoc );
225     _set_Sea_level_radius( sea_level_radius_meters * SG_METER_TO_FEET );
226
227     // Set initial velocities
228     SG_LOG( SG_FLIGHT, SG_INFO, "...initializing velocities..." );
229     if ( !fgHasNode("/sim/startup/speed-set") ) {
230         set_V_calibrated_kts(0.0);
231     } else {
232         const string speedset = fgGetString("/sim/startup/speed-set");
233         if ( speedset == "knots" || speedset == "KNOTS" ) {
234             set_V_calibrated_kts( fgGetDouble("/velocities/airspeed-kt") );
235         } else if ( speedset == "mach" || speedset == "MACH" ) {
236             set_Mach_number( fgGetDouble("/velocities/mach") );
237         } else if ( speedset == "UVW" || speedset == "uvw" ) {
238             set_Velocities_Wind_Body(
239                                      fgGetDouble("/velocities/uBody-fps"),
240                                      fgGetDouble("/velocities/vBody-fps"),
241                                      fgGetDouble("/velocities/wBody-fps") );
242         } else if ( speedset == "NED" || speedset == "ned" ) {
243             set_Velocities_Local(
244                                  fgGetDouble("/velocities/speed-north-fps"),
245                                  fgGetDouble("/velocities/speed-east-fps"),
246                                  fgGetDouble("/velocities/speed-down-fps") );
247         } else {
248             SG_LOG( SG_FLIGHT, SG_ALERT,
249                     "Unrecognized value for /sim/startup/speed-set: "
250                     << speedset);
251             set_V_calibrated_kts( 0.0 );
252         }
253     }
254
255     // Set initial Euler angles
256     SG_LOG( SG_FLIGHT, SG_INFO, "...initializing Euler angles..." );
257     set_Euler_Angles( fgGetDouble("/orientation/roll-deg")
258                         * SGD_DEGREES_TO_RADIANS,
259                       fgGetDouble("/orientation/pitch-deg")
260                         * SGD_DEGREES_TO_RADIANS,
261                       fgGetDouble("/orientation/heading-deg")
262                         * SGD_DEGREES_TO_RADIANS );
263
264     SG_LOG( SG_FLIGHT, SG_INFO, "End common FDM init" );
265 }
266
267
268 /**
269  * Bind getters and setters to properties.
270  *
271  * The bind() method will be invoked after init().  Note that unlike
272  * the usual implementations of FGSubsystem::bind(), this method does
273  * not automatically pick up existing values for the properties at
274  * bind time; instead, all values are set explicitly in the init()
275  * method.
276  */
277 void
278 FGInterface::bind ()
279 {
280   bound = true;
281
282                                 // Time management (read-only)
283 //   fgTie("/fdm/time/delta_t", this,
284 //         &FGInterface::get_delta_t); // read-only
285 //   fgTie("/fdm/time/elapsed", this,
286 //         &FGInterface::get_elapsed); // read-only
287 //   fgTie("/fdm/time/remainder", this,
288 //         &FGInterface::get_remainder); // read-only
289 //   fgTie("/fdm/time/multi_loop", this,
290 //         &FGInterface::get_multi_loop); // read-only
291
292                         // Aircraft position
293   fgTie("/position/latitude-deg", this,
294         &FGInterface::get_Latitude_deg,
295         &FGInterface::set_Latitude_deg,
296         false);
297   fgSetArchivable("/position/latitude-deg");
298   fgTie("/position/longitude-deg", this,
299         &FGInterface::get_Longitude_deg,
300         &FGInterface::set_Longitude_deg,
301         false);
302   fgSetArchivable("/position/longitude-deg");
303   fgTie("/position/altitude-ft", this,
304         &FGInterface::get_Altitude,
305         &FGInterface::set_Altitude,
306         false);
307   fgSetArchivable("/position/altitude-ft");
308   fgTie("/position/altitude-agl-ft", this,
309         &FGInterface::get_Altitude_AGL); // read-only
310
311                                 // Orientation
312   fgTie("/orientation/roll-deg", this,
313         &FGInterface::get_Phi_deg,
314         &FGInterface::set_Phi_deg);
315   fgSetArchivable("/orientation/roll-deg");
316   fgTie("/orientation/pitch-deg", this,
317         &FGInterface::get_Theta_deg,
318         &FGInterface::set_Theta_deg);
319   fgSetArchivable("/orientation/pitch-deg");
320   fgTie("/orientation/heading-deg", this,
321         &FGInterface::get_Psi_deg,
322         &FGInterface::set_Psi_deg);
323   fgSetArchivable("/orientation/heading-deg");
324
325                                 // Calibrated airspeed
326   fgTie("/velocities/airspeed-kt", this,
327         &FGInterface::get_V_calibrated_kts,
328         &FGInterface::set_V_calibrated_kts,
329         false);
330
331                                 // Local velocities
332 //   fgTie("/velocities/speed-north-fps", this,
333 //      &FGInterface::get_V_north,
334 //      &FGInterface::set_V_north);
335 //   fgSetArchivable("/velocities/speed-north-fps");
336 //   fgTie("/velocities/speed-east-fps", this,
337 //      &FGInterface::get_V_east,
338 //      &FGInterface::set_V_east);
339 //   fgSetArchivable("/velocities/speed-east-fps");
340 //   fgTie("/velocities/speed-down-fps", this,
341 //      &FGInterface::get_V_down,
342 //      &FGInterface::set_V_down);
343 //   fgSetArchivable("/velocities/speed-down-fps");
344                                 // FIXME: Temporarily read-only, until the
345                                 // incompatibilities between JSBSim and
346                                 // LaRCSim are fixed (LaRCSim adds the
347                                 // earth's rotation to the east velocity).
348   fgTie("/velocities/speed-north-fps", this,
349         &FGInterface::get_V_north);
350   fgTie("/velocities/speed-east-fps", this,
351         &FGInterface::get_V_east);
352   fgTie("/velocities/speed-down-fps", this,
353         &FGInterface::get_V_down);
354
355                                 // Relative wind
356                                 // FIXME: temporarily archivable, until
357                                 // the NED problem is fixed.
358   fgTie("/velocities/uBody-fps", this,
359         &FGInterface::get_uBody,
360         &FGInterface::set_uBody,
361         false);
362   fgSetArchivable("/velocities/uBody-fps");
363   fgTie("/velocities/vBody-fps", this,
364         &FGInterface::get_vBody,
365         &FGInterface::set_vBody,
366         false);
367   fgSetArchivable("/velocities/vBody-fps");
368   fgTie("/velocities/wBody-fps", this,
369         &FGInterface::get_wBody,
370         &FGInterface::set_wBody,
371         false);
372   fgSetArchivable("/velocities/wBody-fps");
373
374                                 // Climb and slip (read-only)
375   fgTie("/velocities/vertical-speed-fps", this,
376         &FGInterface::get_Climb_Rate,
377   &FGInterface::set_Climb_Rate ); 
378   fgTie("/velocities/glideslope", this,
379   &FGInterface::get_Gamma_vert_rad,
380   &FGInterface::set_Gamma_vert_rad );
381   fgTie("/velocities/side-slip-rad", this,
382         &FGInterface::get_Beta); // read-only
383   fgTie("/velocities/side-slip-deg", this,
384   &FGInterface::get_Beta_deg); // read-only
385   fgTie("/velocities/alpha-deg", this,
386   &FGInterface::get_Alpha_deg); // read-only
387   fgTie("/accelerations/nlf", this,
388   &FGInterface::get_Nlf); // read-only
389 }
390
391
392 /**
393  * Unbind any properties bound to this FDM.
394  *
395  * This method allows the FDM to release properties so that a new
396  * FDM can bind them instead.
397  */
398 void
399 FGInterface::unbind ()
400 {
401   bound = false;
402
403   fgUntie("/fdm/time/delta_t");
404   fgUntie("/fdm/time/elapsed");
405   fgUntie("/fdm/time/remainder");
406   fgUntie("/fdm/time/multi_loop");
407   fgUntie("/position/latitude-deg");
408   fgUntie("/position/longitude-deg");
409   fgUntie("/position/altitude-ft");
410   fgUntie("/position/altitude-agl-ft");
411   fgUntie("/orientation/heading-deg");
412   fgUntie("/orientation/pitch-deg");
413   fgUntie("/orientation/roll-deg");
414   fgUntie("/velocities/airspeed-kt");
415   fgUntie("/velocities/speed-north-fps");
416   fgUntie("/velocities/speed-east-fps");
417   fgUntie("/velocities/speed-down-fps");
418   fgUntie("/velocities/uBody-fps");
419   fgUntie("/velocities/vBody-fps");
420   fgUntie("/velocities/wBody-fps");
421   fgUntie("/velocities/vertical-speed-fps");
422   fgUntie("/velocities/glideslope");
423   fgUntie("/velocities/side-slip-rad");
424   fgUntie("/velocities/side-slip-deg");
425   fgUntie("/velocities/alpha-deg");
426   fgUntie("/accelerations/nlf");
427   
428 }
429
430 /**
431  * Update the state of the FDM (i.e. run the equations of motion).
432  */
433 void
434 FGInterface::update (double dt)
435 {
436     SG_LOG(SG_FLIGHT, SG_ALERT, "dummy update() ... SHOULDN'T BE CALLED!");
437 }
438
439
440 void FGInterface::_updateGeodeticPosition( double lat, double lon, double alt )
441 {
442     double lat_geoc, sl_radius;
443
444     // cout << "starting sea level rad = " << get_Sea_level_radius() << endl;
445
446     sgGeodToGeoc( lat, alt * SG_FEET_TO_METER, &sl_radius, &lat_geoc );
447
448     SG_LOG( SG_FLIGHT, SG_DEBUG, "lon = " << lon 
449             << " lat_geod = " << lat
450             << " lat_geoc = " << lat_geoc
451             << " alt = " << alt 
452             << " sl_radius = " << sl_radius * SG_METER_TO_FEET
453             << " Equator = " << SG_EQUATORIAL_RADIUS_FT );
454
455     _set_Geocentric_Position( lat_geoc, lon, 
456                               sl_radius * SG_METER_TO_FEET + alt );
457         
458     _set_Geodetic_Position( lat, lon, alt );
459
460     _set_Sea_level_radius( sl_radius * SG_METER_TO_FEET );
461     _set_Runway_altitude( getACModel()->get3DModel()->getFGLocation()->get_cur_elev_m() * SG_METER_TO_FEET );
462
463     _set_sin_lat_geocentric( lat_geoc );
464     _set_cos_lat_geocentric( lat_geoc );
465
466     _set_sin_cos_longitude( lon );
467
468     _set_sin_cos_latitude( lat );
469
470     /* Norman's code for slope of the terrain */
471     /* needs to be tested -- get it on the HUD and taxi around */
472     /* double *tnorm = scenery.cur_normal;
473
474        double sy = sin ( -get_Psi() ) ;
475        double cy = cos ( -get_Psi() ) ;
476
477        double phitb, thetatb, psitb;
478        if ( tnorm[1] != 0.0 ) {
479            psitb = -atan2 ( tnorm[0], tnorm[1] );
480        }
481        if ( tnorm[2] != 0.0 ) { 
482            thetatb =  atan2 ( tnorm[0] * cy - tnorm[1] * sy, tnorm[2] );
483            phitb = -atan2 ( tnorm[1] * cy + tnorm[0] * sy, tnorm[2] );  
484        }        
485         
486        _set_terrain_slope(phitb, thetatb, psitb) 
487      */
488 }
489
490
491 void FGInterface::_updateGeocentricPosition( double lat_geoc, double lon,
492                                              double alt )
493 {
494     double lat_geod, tmp_alt, sl_radius1, sl_radius2, tmp_lat_geoc;
495
496     // cout << "starting sea level rad = " << get_Sea_level_radius() << endl;
497
498     sgGeocToGeod( lat_geoc, ( get_Sea_level_radius() + alt ) * SG_FEET_TO_METER,
499                   &lat_geod, &tmp_alt, &sl_radius1 );
500     sgGeodToGeoc( lat_geod, alt * SG_FEET_TO_METER, &sl_radius2, &tmp_lat_geoc );
501
502     SG_LOG( SG_FLIGHT, SG_DEBUG, "lon = " << lon 
503             << " lat_geod = " << lat_geod
504             << " lat_geoc = " << lat_geoc
505             << " alt = " << alt 
506             << " tmp_alt = " << tmp_alt * SG_METER_TO_FEET
507             << " sl_radius1 = " << sl_radius1 * SG_METER_TO_FEET
508             << " sl_radius2 = " << sl_radius2 * SG_METER_TO_FEET
509             << " Equator = " << SG_EQUATORIAL_RADIUS_FT );
510
511     _set_Geocentric_Position( lat_geoc, lon, 
512                               sl_radius2 * SG_METER_TO_FEET + alt );
513         
514     _set_Geodetic_Position( lat_geod, lon, alt );
515
516     _set_Sea_level_radius( sl_radius2 * SG_METER_TO_FEET );
517     _set_Runway_altitude( getACModel()->get3DModel()->getFGLocation()->get_cur_elev_m() * SG_METER_TO_FEET );
518
519     _set_sin_lat_geocentric( lat_geoc );
520     _set_cos_lat_geocentric( lat_geoc );
521
522     _set_sin_cos_longitude( lon );
523
524     _set_sin_cos_latitude( lat_geod );
525
526     /* Norman's code for slope of the terrain */
527     /* needs to be tested -- get it on the HUD and taxi around */
528     /* double *tnorm = scenery.cur_normal;
529
530        double sy = sin ( -get_Psi() ) ;
531        double cy = cos ( -get_Psi() ) ;
532
533        double phitb, thetatb, psitb;
534        if ( tnorm[1] != 0.0 ) {
535            psitb = -atan2 ( tnorm[0], tnorm[1] );
536        }
537        if ( tnorm[2] != 0.0 ) { 
538            thetatb =  atan2 ( tnorm[0] * cy - tnorm[1] * sy, tnorm[2] );
539            phitb = -atan2 ( tnorm[1] * cy + tnorm[0] * sy, tnorm[2] );  
540        }        
541         
542        _set_terrain_slope(phitb, thetatb, psitb) 
543      */
544 }
545
546
547 // Extrapolate fdm based on time_offset (in usec)
548 void FGInterface::extrapolate( int time_offset ) {
549     double dt = time_offset / 1000000.0;
550
551     // -dw- metrowerks complains about ambiguous access, not critical
552     // to keep this ;)
553 #ifndef __MWERKS__
554     SG_LOG(SG_FLIGHT, SG_INFO, "extrapolating FDM by dt = " << dt);
555 #endif
556
557     double lat = geodetic_position_v[0] + geocentric_rates_v[0] * dt;
558     double lat_geoc = geocentric_position_v[0] + geocentric_rates_v[0] * dt;
559
560     double lon = geodetic_position_v[1] + geocentric_rates_v[1] * dt;
561     double lon_geoc = geocentric_position_v[1] + geocentric_rates_v[1] * dt;
562
563     double alt = geodetic_position_v[2] + geocentric_rates_v[2] * dt;
564     double radius = geocentric_position_v[2] + geocentric_rates_v[2] * dt;
565
566     geodetic_position_v[0] = lat;
567     geocentric_position_v[0] = lat_geoc;
568
569     geodetic_position_v[1] = lon;
570     geocentric_position_v[1] = lon_geoc;
571
572     geodetic_position_v[2] = alt;
573     geocentric_position_v[2] = radius;
574 }
575
576 // Positions
577 void FGInterface::set_Latitude(double lat) {
578     geodetic_position_v[0] = lat;
579 }
580
581 void FGInterface::set_Longitude(double lon) {
582     geodetic_position_v[1] = lon;
583 }
584
585 void FGInterface::set_Altitude(double alt) {
586     geodetic_position_v[2] = alt;
587 }
588
589 void FGInterface::set_AltitudeAGL(double altagl) {
590     altitude_agl=altagl;
591 }
592
593 // Velocities
594 void FGInterface::set_V_calibrated_kts(double vc) {
595     v_calibrated_kts = vc;
596 }
597
598 void FGInterface::set_Mach_number(double mach) {
599     mach_number = mach;
600 }
601
602 void FGInterface::set_Velocities_Local( double north, 
603                                         double east, 
604                                         double down ){
605     v_local_v[0] = north;
606     v_local_v[1] = east;
607     v_local_v[2] = down;
608 }
609
610 void FGInterface::set_Velocities_Wind_Body( double u, 
611                                             double v, 
612                                             double w){
613     v_wind_body_v[0] = u;
614     v_wind_body_v[1] = v;
615     v_wind_body_v[2] = w;
616 }
617
618 // Euler angles 
619 void FGInterface::set_Euler_Angles( double phi, 
620                                     double theta, 
621                                     double psi ) {
622     euler_angles_v[0] = phi;
623     euler_angles_v[1] = theta;
624     euler_angles_v[2] = psi;                                            
625 }  
626
627 // Flight Path
628 void FGInterface::set_Climb_Rate( double roc) {
629     climb_rate = roc;
630 }
631
632 void FGInterface::set_Gamma_vert_rad( double gamma) {
633     gamma_vert_rad = gamma;
634 }
635
636 void FGInterface::set_Static_pressure(double p) { static_pressure = p; }
637 void FGInterface::set_Static_temperature(double T) { static_temperature = T; }
638 void FGInterface::set_Density(double rho) { density = rho; }
639
640 void FGInterface::set_Velocities_Local_Airmass (double wnorth, 
641                                                 double weast, 
642                                                 double wdown ) {
643     v_local_airmass_v[0] = wnorth;
644     v_local_airmass_v[1] = weast;
645     v_local_airmass_v[2] = wdown;
646 }
647
648
649 void FGInterface::_busdump(void) {
650
651     SG_LOG(SG_FLIGHT,SG_INFO,"d_pilot_rp_body_v[3]: " << d_pilot_rp_body_v[0] << ", " << d_pilot_rp_body_v[1] << ", " << d_pilot_rp_body_v[2]);
652     SG_LOG(SG_FLIGHT,SG_INFO,"d_cg_rp_body_v[3]: " << d_cg_rp_body_v[0] << ", " << d_cg_rp_body_v[1] << ", " << d_cg_rp_body_v[2]);
653     SG_LOG(SG_FLIGHT,SG_INFO,"f_body_total_v[3]: " << f_body_total_v[0] << ", " << f_body_total_v[1] << ", " << f_body_total_v[2]);
654     SG_LOG(SG_FLIGHT,SG_INFO,"f_local_total_v[3]: " << f_local_total_v[0] << ", " << f_local_total_v[1] << ", " << f_local_total_v[2]);
655     SG_LOG(SG_FLIGHT,SG_INFO,"f_aero_v[3]: " << f_aero_v[0] << ", " << f_aero_v[1] << ", " << f_aero_v[2]);
656     SG_LOG(SG_FLIGHT,SG_INFO,"f_engine_v[3]: " << f_engine_v[0] << ", " << f_engine_v[1] << ", " << f_engine_v[2]);
657     SG_LOG(SG_FLIGHT,SG_INFO,"f_gear_v[3]: " << f_gear_v[0] << ", " << f_gear_v[1] << ", " << f_gear_v[2]);
658     SG_LOG(SG_FLIGHT,SG_INFO,"m_total_rp_v[3]: " << m_total_rp_v[0] << ", " << m_total_rp_v[1] << ", " << m_total_rp_v[2]);
659     SG_LOG(SG_FLIGHT,SG_INFO,"m_total_cg_v[3]: " << m_total_cg_v[0] << ", " << m_total_cg_v[1] << ", " << m_total_cg_v[2]);
660     SG_LOG(SG_FLIGHT,SG_INFO,"m_aero_v[3]: " << m_aero_v[0] << ", " << m_aero_v[1] << ", " << m_aero_v[2]);
661     SG_LOG(SG_FLIGHT,SG_INFO,"m_engine_v[3]: " << m_engine_v[0] << ", " << m_engine_v[1] << ", " << m_engine_v[2]);
662     SG_LOG(SG_FLIGHT,SG_INFO,"m_gear_v[3]: " << m_gear_v[0] << ", " << m_gear_v[1] << ", " << m_gear_v[2]);
663     SG_LOG(SG_FLIGHT,SG_INFO,"v_dot_local_v[3]: " << v_dot_local_v[0] << ", " << v_dot_local_v[1] << ", " << v_dot_local_v[2]);
664     SG_LOG(SG_FLIGHT,SG_INFO,"v_dot_body_v[3]: " << v_dot_body_v[0] << ", " << v_dot_body_v[1] << ", " << v_dot_body_v[2]);
665     SG_LOG(SG_FLIGHT,SG_INFO,"a_cg_body_v[3]: " << a_cg_body_v[0] << ", " << a_cg_body_v[1] << ", " << a_cg_body_v[2]);
666     SG_LOG(SG_FLIGHT,SG_INFO,"a_pilot_body_v[3]: " << a_pilot_body_v[0] << ", " << a_pilot_body_v[1] << ", " << a_pilot_body_v[2]);
667     SG_LOG(SG_FLIGHT,SG_INFO,"n_cg_body_v[3]: " << n_cg_body_v[0] << ", " << n_cg_body_v[1] << ", " << n_cg_body_v[2]);
668     SG_LOG(SG_FLIGHT,SG_INFO,"n_pilot_body_v[3]: " << n_pilot_body_v[0] << ", " << n_pilot_body_v[1] << ", " << n_pilot_body_v[2]);
669     SG_LOG(SG_FLIGHT,SG_INFO,"omega_dot_body_v[3]: " << omega_dot_body_v[0] << ", " << omega_dot_body_v[1] << ", " << omega_dot_body_v[2]);
670     SG_LOG(SG_FLIGHT,SG_INFO,"v_local_v[3]: " << v_local_v[0] << ", " << v_local_v[1] << ", " << v_local_v[2]);
671     SG_LOG(SG_FLIGHT,SG_INFO,"v_local_rel_ground_v[3]: " << v_local_rel_ground_v[0] << ", " << v_local_rel_ground_v[1] << ", " << v_local_rel_ground_v[2]);
672     SG_LOG(SG_FLIGHT,SG_INFO,"v_local_airmass_v[3]: " << v_local_airmass_v[0] << ", " << v_local_airmass_v[1] << ", " << v_local_airmass_v[2]);
673     SG_LOG(SG_FLIGHT,SG_INFO,"v_local_rel_airmass_v[3]: " << v_local_rel_airmass_v[0] << ", " << v_local_rel_airmass_v[1] << ", " << v_local_rel_airmass_v[2]);
674     SG_LOG(SG_FLIGHT,SG_INFO,"v_local_gust_v[3]: " << v_local_gust_v[0] << ", " << v_local_gust_v[1] << ", " << v_local_gust_v[2]);
675     SG_LOG(SG_FLIGHT,SG_INFO,"v_wind_body_v[3]: " << v_wind_body_v[0] << ", " << v_wind_body_v[1] << ", " << v_wind_body_v[2]);
676     SG_LOG(SG_FLIGHT,SG_INFO,"omega_body_v[3]: " << omega_body_v[0] << ", " << omega_body_v[1] << ", " << omega_body_v[2]);
677     SG_LOG(SG_FLIGHT,SG_INFO,"omega_local_v[3]: " << omega_local_v[0] << ", " << omega_local_v[1] << ", " << omega_local_v[2]);
678     SG_LOG(SG_FLIGHT,SG_INFO,"omega_total_v[3]: " << omega_total_v[0] << ", " << omega_total_v[1] << ", " << omega_total_v[2]);
679     SG_LOG(SG_FLIGHT,SG_INFO,"euler_rates_v[3]: " << euler_rates_v[0] << ", " << euler_rates_v[1] << ", " << euler_rates_v[2]);
680     SG_LOG(SG_FLIGHT,SG_INFO,"geocentric_rates_v[3]: " << geocentric_rates_v[0] << ", " << geocentric_rates_v[1] << ", " << geocentric_rates_v[2]);
681     SG_LOG(SG_FLIGHT,SG_INFO,"geocentric_position_v[3]: " << geocentric_position_v[0] << ", " << geocentric_position_v[1] << ", " << geocentric_position_v[2]);
682     SG_LOG(SG_FLIGHT,SG_INFO,"geodetic_position_v[3]: " << geodetic_position_v[0] << ", " << geodetic_position_v[1] << ", " << geodetic_position_v[2]);
683     SG_LOG(SG_FLIGHT,SG_INFO,"euler_angles_v[3]: " << euler_angles_v[0] << ", " << euler_angles_v[1] << ", " << euler_angles_v[2]);
684     SG_LOG(SG_FLIGHT,SG_INFO,"d_cg_rwy_local_v[3]: " << d_cg_rwy_local_v[0] << ", " << d_cg_rwy_local_v[1] << ", " << d_cg_rwy_local_v[2]);
685     SG_LOG(SG_FLIGHT,SG_INFO,"d_cg_rwy_rwy_v[3]: " << d_cg_rwy_rwy_v[0] << ", " << d_cg_rwy_rwy_v[1] << ", " << d_cg_rwy_rwy_v[2]);
686     SG_LOG(SG_FLIGHT,SG_INFO,"d_pilot_rwy_local_v[3]: " << d_pilot_rwy_local_v[0] << ", " << d_pilot_rwy_local_v[1] << ", " << d_pilot_rwy_local_v[2]);
687     SG_LOG(SG_FLIGHT,SG_INFO,"d_pilot_rwy_rwy_v[3]: " << d_pilot_rwy_rwy_v[0] << ", " << d_pilot_rwy_rwy_v[1] << ", " << d_pilot_rwy_rwy_v[2]);
688
689     SG_LOG(SG_FLIGHT,SG_INFO,"t_local_to_body_m[0][3]: " << t_local_to_body_m[0][0] << ", " << t_local_to_body_m[0][1] << ", " << t_local_to_body_m[0][2]);
690     SG_LOG(SG_FLIGHT,SG_INFO,"t_local_to_body_m[1][3]: " << t_local_to_body_m[1][0] << ", " << t_local_to_body_m[1][1] << ", " << t_local_to_body_m[1][2]);
691     SG_LOG(SG_FLIGHT,SG_INFO,"t_local_to_body_m[2][3]: " << t_local_to_body_m[2][0] << ", " << t_local_to_body_m[2][1] << ", " << t_local_to_body_m[2][2]);
692
693     SG_LOG(SG_FLIGHT,SG_INFO,"mass: " << mass );
694     SG_LOG(SG_FLIGHT,SG_INFO,"i_xx: " << i_xx );
695     SG_LOG(SG_FLIGHT,SG_INFO,"i_yy: " << i_yy );
696     SG_LOG(SG_FLIGHT,SG_INFO,"i_zz: " << i_zz );
697     SG_LOG(SG_FLIGHT,SG_INFO,"i_xz: " << i_xz );
698     SG_LOG(SG_FLIGHT,SG_INFO,"nlf: " << nlf );
699     SG_LOG(SG_FLIGHT,SG_INFO,"v_rel_wind: " << v_rel_wind );
700     SG_LOG(SG_FLIGHT,SG_INFO,"v_true_kts: " << v_true_kts );
701     SG_LOG(SG_FLIGHT,SG_INFO,"v_rel_ground: " << v_rel_ground );
702     SG_LOG(SG_FLIGHT,SG_INFO,"v_inertial: " << v_inertial );
703     SG_LOG(SG_FLIGHT,SG_INFO,"v_ground_speed: " << v_ground_speed );
704     SG_LOG(SG_FLIGHT,SG_INFO,"v_equiv: " << v_equiv );
705     SG_LOG(SG_FLIGHT,SG_INFO,"v_equiv_kts: " << v_equiv_kts );
706     SG_LOG(SG_FLIGHT,SG_INFO,"v_calibrated: " << v_calibrated );
707     SG_LOG(SG_FLIGHT,SG_INFO,"v_calibrated_kts: " << v_calibrated_kts );
708     SG_LOG(SG_FLIGHT,SG_INFO,"gravity: " << gravity );
709     SG_LOG(SG_FLIGHT,SG_INFO,"centrifugal_relief: " << centrifugal_relief );
710     SG_LOG(SG_FLIGHT,SG_INFO,"alpha: " << alpha );
711     SG_LOG(SG_FLIGHT,SG_INFO,"beta: " << beta );
712     SG_LOG(SG_FLIGHT,SG_INFO,"alpha_dot: " << alpha_dot );
713     SG_LOG(SG_FLIGHT,SG_INFO,"beta_dot: " << beta_dot );
714     SG_LOG(SG_FLIGHT,SG_INFO,"cos_alpha: " << cos_alpha );
715     SG_LOG(SG_FLIGHT,SG_INFO,"sin_alpha: " << sin_alpha );
716     SG_LOG(SG_FLIGHT,SG_INFO,"cos_beta: " << cos_beta );
717     SG_LOG(SG_FLIGHT,SG_INFO,"sin_beta: " << sin_beta );
718     SG_LOG(SG_FLIGHT,SG_INFO,"cos_phi: " << cos_phi );
719     SG_LOG(SG_FLIGHT,SG_INFO,"sin_phi: " << sin_phi );
720     SG_LOG(SG_FLIGHT,SG_INFO,"cos_theta: " << cos_theta );
721     SG_LOG(SG_FLIGHT,SG_INFO,"sin_theta: " << sin_theta );
722     SG_LOG(SG_FLIGHT,SG_INFO,"cos_psi: " << cos_psi );
723     SG_LOG(SG_FLIGHT,SG_INFO,"sin_psi: " << sin_psi );
724     SG_LOG(SG_FLIGHT,SG_INFO,"gamma_vert_rad: " << gamma_vert_rad );
725     SG_LOG(SG_FLIGHT,SG_INFO,"gamma_horiz_rad: " << gamma_horiz_rad );
726     SG_LOG(SG_FLIGHT,SG_INFO,"sigma: " << sigma );
727     SG_LOG(SG_FLIGHT,SG_INFO,"density: " << density );
728     SG_LOG(SG_FLIGHT,SG_INFO,"v_sound: " << v_sound );
729     SG_LOG(SG_FLIGHT,SG_INFO,"mach_number: " << mach_number );
730     SG_LOG(SG_FLIGHT,SG_INFO,"static_pressure: " << static_pressure );
731     SG_LOG(SG_FLIGHT,SG_INFO,"total_pressure: " << total_pressure );
732     SG_LOG(SG_FLIGHT,SG_INFO,"impact_pressure: " << impact_pressure );
733     SG_LOG(SG_FLIGHT,SG_INFO,"dynamic_pressure: " << dynamic_pressure );
734     SG_LOG(SG_FLIGHT,SG_INFO,"static_temperature: " << static_temperature );
735     SG_LOG(SG_FLIGHT,SG_INFO,"total_temperature: " << total_temperature );
736     SG_LOG(SG_FLIGHT,SG_INFO,"sea_level_radius: " << sea_level_radius );
737     SG_LOG(SG_FLIGHT,SG_INFO,"earth_position_angle: " << earth_position_angle );
738     SG_LOG(SG_FLIGHT,SG_INFO,"runway_altitude: " << runway_altitude );
739     SG_LOG(SG_FLIGHT,SG_INFO,"runway_latitude: " << runway_latitude );
740     SG_LOG(SG_FLIGHT,SG_INFO,"runway_longitude: " << runway_longitude );
741     SG_LOG(SG_FLIGHT,SG_INFO,"runway_heading: " << runway_heading );
742     SG_LOG(SG_FLIGHT,SG_INFO,"radius_to_rwy: " << radius_to_rwy );
743     SG_LOG(SG_FLIGHT,SG_INFO,"climb_rate: " << climb_rate );
744     SG_LOG(SG_FLIGHT,SG_INFO,"sin_lat_geocentric: " << sin_lat_geocentric );
745     SG_LOG(SG_FLIGHT,SG_INFO,"cos_lat_geocentric: " << cos_lat_geocentric );
746     SG_LOG(SG_FLIGHT,SG_INFO,"sin_longitude: " << sin_longitude );
747     SG_LOG(SG_FLIGHT,SG_INFO,"cos_longitude: " << cos_longitude );
748     SG_LOG(SG_FLIGHT,SG_INFO,"sin_latitude: " << sin_latitude );
749     SG_LOG(SG_FLIGHT,SG_INFO,"cos_latitude: " << cos_latitude );
750     SG_LOG(SG_FLIGHT,SG_INFO,"altitude_agl: " << altitude_agl );
751 }
752
753
754 void fgToggleFDMdataLogging(void) {
755   cur_fdm_state->ToggleDataLogging();
756 }