ardupilot/libraries/APO/AP_Guide.cpp

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/*
* AP_Guide.cpp
*
* Created on: Apr 30, 2011
* Author: jgoppert
*/
#include "AP_Guide.h"
#include "../FastSerial/FastSerial.h"
#include "AP_Navigator.h"
#include "constants.h"
#include "AP_HardwareAbstractionLayer.h"
#include "AP_CommLink.h"
namespace apo {
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AP_Guide::AP_Guide(AP_Navigator * nav, AP_HardwareAbstractionLayer * hal) :
_nav(nav), _hal(hal), _command(AP_MavlinkCommand::home),
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_previousCommand(AP_MavlinkCommand::home),
_headingCommand(0), _airSpeedCommand(0),
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_groundSpeedCommand(0), _altitudeCommand(0),
_mode(MAV_NAV_LOST),
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_numberOfCommands(1), _cmdIndex(0), _nextCommandCalls(0),
_nextCommandTimer(0) {
}
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void AP_Guide::setCurrentIndex(uint8_t val) {
_cmdIndex.set_and_save(val);
_command = AP_MavlinkCommand(getCurrentIndex());
_previousCommand = AP_MavlinkCommand(getPreviousIndex());
_hal->gcs->sendMessage(MAVLINK_MSG_ID_WAYPOINT_CURRENT);
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updateCommand();
}
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float AP_Guide::getHeadingError() {
return wrapAngle(getHeadingCommand()
- _nav->getYaw());
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}
float AP_Guide::getDistanceToNextWaypoint() {
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return _command.distanceTo(_nav->getLat_degInt(),
_nav->getLon_degInt());
}
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float AP_Guide::getGroundSpeedError() {
return _groundSpeedCommand - _nav->getGroundSpeed();
}
MavlinkGuide::MavlinkGuide(AP_Navigator * nav,
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AP_HardwareAbstractionLayer * hal, float velCmd, float xt, float xtLim) :
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AP_Guide(nav, hal),
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_group(k_guide, PSTR("guide_")),
_velocityCommand(&_group, 1, velCmd, PSTR("velCmd")),
_crossTrackGain(&_group, 2, xt, PSTR("xt")),
_crossTrackLim(&_group, 3, xtLim, PSTR("xtLim")) {
}
float AP_Guide::getYawError(){
return wrapAngle(_yawCommand - _nav->getYaw());
}
void MavlinkGuide::update() {
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// process mavlink commands
handleCommand();
}
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float MavlinkGuide::getPNError() {
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return -_command.getPN(_nav->getLat_degInt(), _nav->getLon_degInt());
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}
float MavlinkGuide::getPEError() {
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return -_command.getPE(_nav->getLat_degInt(), _nav->getLon_degInt());
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}
float MavlinkGuide::getPDError() {
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return -_command.getPD(_nav->getAlt_intM());
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}
void MavlinkGuide::nextCommand() {
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// within 1 seconds, check if more than 5 calls to next command occur
// if they do, go to home waypoint
if (millis() - _nextCommandTimer < 1000) {
if (_nextCommandCalls > 5) {
Serial.println("commands loading too fast, returning home");
setCurrentIndex(0);
setNumberOfCommands(1);
_nextCommandCalls = 0;
_nextCommandTimer = millis();
return;
}
_nextCommandCalls++;
} else {
_nextCommandTimer = millis();
_nextCommandCalls = 0;
}
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// set the current command
setCurrentIndex(getNextIndex());
}
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void MavlinkGuide::updateCommand() {
// update guidance mode
if (_command.getCommand() == MAV_CMD_NAV_WAYPOINT) {
_mode = MAV_NAV_WAYPOINT;
} else if (_command.getCommand() == MAV_CMD_NAV_LAND) {
_mode = MAV_NAV_LANDING;
} else if (_command.getCommand() == MAV_CMD_NAV_LOITER_TIME) {
_mode = MAV_NAV_LOITER;
} else if (_command.getCommand() == MAV_CMD_NAV_LOITER_UNLIM) {
_mode = MAV_NAV_LOITER;
} else if (_command.getCommand() == MAV_CMD_NAV_LOITER_TURNS) {
_mode = MAV_NAV_LOITER;
} else if (_command.getCommand() == MAV_CMD_NAV_RETURN_TO_LAUNCH) {
_mode = MAV_NAV_RETURNING;
} else if (_command.getCommand() == MAV_CMD_NAV_TAKEOFF) {
_mode = MAV_NAV_LIFTOFF;
} else {
_hal->debug->printf_P(PSTR("unhandled command"));
_hal->gcs->sendText(SEVERITY_HIGH,PSTR("unhandled command"));
nextCommand();
return;
}
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// TODO handle more commands
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//MAV_CMD_CONDITION_CHANGE_ALT
//MAV_CMD_CONDITION_DELAY
//MAV_CMD_CONDITION_DISTANCE
//MAV_CMD_CONDITION_LAST
//MAV_CMD_CONDITION_YAW
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//MAV_CMD_DO_CHANGE_SPEED
//MAV_CMD_DO_CONTROL_VIDEO
//MAV_CMD_DO_JUMP
//MAV_CMD_DO_LAST
//MAV_CMD_DO_LAST
//MAV_CMD_DO_REPEAT_RELAY
//MAV_CMD_DO_REPEAT_SERVO
//MAV_CMD_DO_SET_HOME
//MAV_CMD_DO_SET_MODE
//MAV_CMD_DO_SET_PARAMETER
//MAV_CMD_DO_SET_RELAY
//MAV_CMD_DO_SET_SERVO
//MAV_CMD_PREFLIGHT_CALIBRATION
//MAV_CMD_PREFLIGHT_STORAGE
}
void MavlinkGuide::handleCommand() {
// for these modes use crosstrack navigation
if (
_mode == MAV_NAV_WAYPOINT ||
_mode == MAV_NAV_LANDING ||
_mode == MAV_NAV_LIFTOFF ||
_mode == MAV_NAV_VECTOR) {
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// if we don't have enough waypoint for cross track calcs
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// switch to loiter mode
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if (_numberOfCommands == 1) {
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_mode = MAV_NAV_LOITER;
return;
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}
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// check if we are at waypoint or if command
// radius is zero within tolerance
if ( (getDistanceToNextWaypoint() < _command.getRadius()) | (getDistanceToNextWaypoint() < 1e-5) ) {
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_hal->gcs->sendText(SEVERITY_LOW,PSTR("waypoint reached (distance)"));
_hal->debug->printf_P(PSTR("waypoint reached (distance)"));
nextCommand();
return;
}
// check for along track next waypoint requirement
float alongTrack = _command.alongTrack(_previousCommand,
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_command,
_nav->getLat_degInt(),
_nav->getLon_degInt());
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float segmentLength = _previousCommand.distanceTo(_command);
if (alongTrack > segmentLength) {
_hal->gcs->sendText(SEVERITY_LOW,PSTR("waypoint reached (along track)"));
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_hal->debug->printf_P(PSTR("waypoint reached (along track) segmentLength: %f\t alongTrack: %f\n"),segmentLength,alongTrack);
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nextCommand();
return;
}
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// calculate altitude and heading commands
_altitudeCommand = _command.getAlt();
float dXt = _command.crossTrack(_previousCommand,
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_nav->getLat_degInt(),
_nav->getLon_degInt());
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float temp = dXt * _crossTrackGain * deg2Rad; // crosstrack gain, rad/m
if (temp > _crossTrackLim * deg2Rad)
temp = _crossTrackLim * deg2Rad;
if (temp < -_crossTrackLim * deg2Rad)
temp = -_crossTrackLim * deg2Rad;
float bearing = _previousCommand.bearingTo(_command);
_headingCommand = bearing - temp;
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_yawCommand = _command.getYawCommand();
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//_hal->debug->printf_P(
//PSTR("nav: bCurrent2Dest: %f\tdXt: %f\tcmdHeading: %f\tnextWpDistance: %f\talongTrack: %f\tyaw command: %f\n"),
//bearing * rad2Deg, dXt, _headingCommand * rad2Deg, getDistanceToNextWaypoint(), alongTrack, _yawCommand*rad2Deg);
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// for these modes just head to current command
} else if (
_mode == MAV_NAV_LOITER ||
_mode == MAV_NAV_RETURNING) {
_altitudeCommand = AP_MavlinkCommand::home.getAlt();
_headingCommand = AP_MavlinkCommand::home.bearingTo(
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_nav->getLat_degInt(), _nav->getLon_degInt())
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+ 180 * deg2Rad;
if (_headingCommand > 360 * deg2Rad)
_headingCommand -= 360 * deg2Rad;
// do nothing for these modes
} else if (
_mode == MAV_NAV_GROUNDED ||
_mode == MAV_NAV_HOLD ||
_mode == MAV_NAV_LOST) {
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}
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// if in unhandled mode, then return
else {
_hal->debug->printf_P(PSTR("unhandled guide mode"));
_hal->gcs->sendText(SEVERITY_HIGH,PSTR("unhandled guide mode"));
_mode = MAV_NAV_RETURNING;
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}
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_groundSpeedCommand = _velocityCommand;
// debug
//_hal->debug->printf_P(
//PSTR("guide loop, number: %d, current index: %d, previous index: %d\n"),
//getNumberOfCommands(), getCurrentIndex(), getPreviousIndex());
}
} // namespace apo
// vim:ts=4:sw=4:expandtab