mirror of https://github.com/ArduPilot/ardupilot
These files are not meant to be in master, they should only be in the APM_Camera branch for now
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#include "AP_Mount.h"
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AP_Mount::AP_Mount(GPS *gps, AP_DCM *dcm, AP_Var::Key key, const prog_char_t *name):
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_group(key, name),
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_mountMode(&_group, 0, 0, name ? PSTR("MODE") : 0), // suppress name if group has no name
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_mountType(&_group, 0, 0, name ? PSTR("TYPE") : 0),
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_dcm(dcm);
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_gps(gps);
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{
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}
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void AP_Mount::SetPitchYaw(Location targetGPSLocation)
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{
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_targetGPSLocation=targetGPSLocation;
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//set mode
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_mountMode=gps;
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//update mount position
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UpDateMount();
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}
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void AP_Mount::SetGPSTarget(Location targetGPSLocation)
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{
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_targetGPSLocation=targetGPSLocation;
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//set mode
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_mountMode=gps;
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//update mount position
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UpDateMount();
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}
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void AP_Mount::SetAssisted(int roll, int pitch, int yaw)
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{
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_AssistAngles.x = roll;
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_AssistAngles.y = pitch;
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_AssistAngles.z = yaw;
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//set mode
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_mountMode=assisted;
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//update mount position
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UpDateMount();
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}
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//sets the servo angles for FPV, note angles are * 100
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void AP_Mount::SetMountFreeRoam(int roll, int pitch, int yaw)
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{
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_RoamAngles.x=roll;
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_RoamAngles.y=pitch;
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_RoamAngles.z=yaw;
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//set mode
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_mountMode=roam;
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//now update mount position
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UpDateMount();
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}
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//sets the servo angles for landing, note angles are * 100
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void AP_Mount::SetMountLanding(int roll, int pitch, int yaw)
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{
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_LandingAngles.x=roll;
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_LandingAngles.y=pitch;
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_LandingAngles.z=yaw;
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//set mode
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_mountMode=landing;
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//now update mount position
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UpDateMount();
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}
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void AP_Mount::SetNone()
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{
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//set mode
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_mountMode=none;
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//now update mount position
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UpDateMount();
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}
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void AP_Mount::UpDateMount()
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{
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switch(_mountMode)
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{
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case gps:
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{
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if(_gps->fix)
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{
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CalcGPSTargetVector(&_targetGPSLocation);
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}
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m = _dcm->get_dcm_transposed();
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targ = m*_GPSVector;
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this->CalcMountAnglesFromVector(*targ)
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break;
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}
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case stabilise:
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{
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//to do
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break;
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}
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case roam:
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{
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pitchAngle=100*_RoamAngles.y;
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rollAngle=100*_RoamAngles.x;
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yawAngle=100*_RoamAngles.z;
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break;
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}
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case assisted:
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{
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m = _dcm->get_dcm_transposed();
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targ = m*_AssistVector;
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this->CalcMountAnglesFromVector(*targ)
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break;
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}
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case landing:
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{
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pitchAngle=100*_RoamAngles.y;
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rollAngle=100*_RoamAngles.x;
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yawAngle=100*_RoamAngles.z;
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break;
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}
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case none:
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{
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//do nothing
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break;
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}
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default:
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{
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//do nothing
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break;
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}
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}
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}
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void AP_Mount::SetMode(MountMode mode)
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{
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_mountMode=mode;
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}
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void AP_Mount::CalcGPSTargetVector(struct Location *target)
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{
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_targetVector.x = (target->lng-_gps->longitude) * cos((_gps->latitude+target->lat)/2)*.01113195;
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_targetVector.y = (target->lat-_gps->latitude)*.01113195;
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_targetVector.z = (_gps->altitude-target->alt);
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}
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void AP_Mount::CalcMountAnglesFromVector(Vector3f *targ)
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{
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switch(_mountType)
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{
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case pitch_yaw:
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{
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//need to tidy up maths for below
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pitchAngle = atan2((sqrt(sq(targ.y) + sq(targ.x)) * .01113195), targ.z) * -1;
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yawAngle = 9000 + atan2(-targ.y, targ.x) * 5729.57795;
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break;
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}
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case pitch_roll:
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{
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pitchAngle = degrees(atan2(-targ.x,targ.z))*100; //pitch
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rollAngle = degrees(atan2(targ.y,targ.z))*100; //roll
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break;
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}
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case pitch_roll_yaw:
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{
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//to do
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break;
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}
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case none:
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{
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//do nothing
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break;
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}
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default:
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{
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//do nothing
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break;
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}
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}
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}
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@ -1,99 +0,0 @@
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// -*- tab-width: 4; Mode: C++; c-basic-offset: 4; indent-tabs-mode: t -*-
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/************************************************************
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* AP_mount -- library to control a 2 or 3 axis mount. *
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* *
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* Author: Joe Holdsworth; *
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* Ritchie Wilson; *
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* Amiclair Lucus; *
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* *
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* Purpose: Move a 2 or 3 axis mount attached to vehicle, *
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* Used for mount to track targets or stabilise *
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* camera plus other modes. *
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* *
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* Usage: Use in main code to control mounts attached to *
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* vehicle. *
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* 1. initialise class *
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* 2. setMounttype * *
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* *
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*Comments: All angles in degrees * 100, distances in meters*
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* unless otherwise stated. *
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************************************************************/
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#ifndef AP_Mount_H
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#define AP_Mount_H
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#include <AP_Common.h>
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#include <AP_Math.h>
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#include <AP_GPS.h>
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#include <AP_DCM.h>
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class AP_Mount
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{
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protected:
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AP_Var_group _group; // must be before all vars to keep ctor init order correct
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public:
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//Constructors
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AP_Mount(GPS *gps, AP_DCM *dcm, AP_Var::Key key, const prog_char_t *name);
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//enums
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enum MountMode{
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gps = 0,
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stabilise = 1, //note the correct english spelling :)
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roam = 2,
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assisted = 3,
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landing = 4,
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none = 5
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};
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enum MountType{
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pitch_yaw = 0,
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pitch_roll = 1,
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pitch_roll_yaw = 2,
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none = 3;
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};
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//Accessors
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//void SetPitchYaw(int pitchCh, int yawCh);
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//void SetPitchRoll(int pitchCh, int rollCh);
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//void SetPitchRollYaw(int pitchCh, int rollCh, int yawCh);
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void SetGPSTarget(Location targetGPSLocation); //used to tell the mount to track GPS location
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void SetAssisted(int roll, int pitch, int yaw);
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void SetMountFreeRoam(int roll, int pitch, int yaw);//used in the FPV for example,
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void SetMountLanding(int roll, int pitch, int yaw); //set mount landing position
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void SetNone();
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//methods
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void UpDateMount();
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void SetMode(MountMode mode);
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int pitchAngle; //degrees*100
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int rollAngle; //degrees*100
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int yawAngle; //degrees*100
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private:
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//methods
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void CalcGPSTargetVector(struct Location *target);
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void CalcMountAnglesFromVector(Vector3f *targ);
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//void CalculateDCM(int roll, int pitch, int yaw);
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//members
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AP_DCM *_dcm;
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GPS *_gps;
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MountMode _mountMode;
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MountType _mountType;
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struct Location _targetGPSLocation;
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Vector3f _GPSVector; //target vector calculated stored in meters
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Vector3i _RoamAngles; //used for roam mode vector.x = roll vector.y = pitch, vector.z=yaw
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Vector3i _LandingAngles; //landing position for mount, vector.x = roll vector.y = pitch, vector.z=yaw
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Vector3i _AssistAngles; //used to keep angles that user has supplied from assisted targetting
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Vector3f _AssistVector; //used to keep vector calculated from _AssistAngles
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Matrix3f _m; //holds 3 x 3 matrix, var is used as temp in calcs
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Vector3f _targ; //holds target vector, var is used as temp in calcs
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};
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#endif
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