mirror of https://github.com/ArduPilot/ardupilot
165 lines
5.9 KiB
C++
165 lines
5.9 KiB
C++
#include "AP_Mount_SToRM32.h"
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#if HAL_MOUNT_STORM32MAVLINK_ENABLED
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#include <AP_HAL/AP_HAL.h>
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#include <GCS_MAVLink/GCS.h>
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extern const AP_HAL::HAL& hal;
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#define AP_MOUNT_STORM32_RESEND_MS 1000 // resend angle targets to gimbal once per second
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#define AP_MOUNT_STORM32_SEARCH_MS 60000 // search for gimbal for 1 minute after startup
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// update mount position - should be called periodically
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void AP_Mount_SToRM32::update()
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{
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// exit immediately if not initialised
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if (!_initialised) {
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find_gimbal();
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return;
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}
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// change to RC_TARGETING mode if RC input has changed
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set_rctargeting_on_rcinput_change();
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// flag to trigger sending target angles to gimbal
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bool resend_now = false;
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// update based on mount mode
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switch(get_mode()) {
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// move mount to a "retracted" position. To-Do: remove support and replace with a relaxed mode?
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case MAV_MOUNT_MODE_RETRACT: {
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const Vector3f &target = _params.retract_angles.get();
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mnt_target.angle_rad.set(target*DEG_TO_RAD, false);
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mnt_target.target_type = MountTargetType::ANGLE;
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break;
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}
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// move mount to a neutral position, typically pointing forward
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case MAV_MOUNT_MODE_NEUTRAL: {
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const Vector3f &target = _params.neutral_angles.get();
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mnt_target.angle_rad.set(target*DEG_TO_RAD, false);
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mnt_target.target_type = MountTargetType::ANGLE;
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break;
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}
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// point to the angles given by a mavlink message
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case MAV_MOUNT_MODE_MAVLINK_TARGETING:
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// mnt_target should have already been populated by set_angle_target() or set_rate_target(). Update target angle from rate if necessary
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if (mnt_target.target_type == MountTargetType::RATE) {
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update_angle_target_from_rate(mnt_target.rate_rads, mnt_target.angle_rad);
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}
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resend_now = true;
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break;
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// RC radio manual angle control, but with stabilization from the AHRS
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case MAV_MOUNT_MODE_RC_TARGETING: {
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// update targets using pilot's RC inputs
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MountTarget rc_target;
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get_rc_target(mnt_target.target_type, rc_target);
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switch (mnt_target.target_type) {
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case MountTargetType::ANGLE:
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mnt_target.angle_rad = rc_target;
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break;
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case MountTargetType::RATE:
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mnt_target.rate_rads = rc_target;
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break;
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}
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resend_now = true;
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break;
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}
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// point mount to a GPS point given by the mission planner
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case MAV_MOUNT_MODE_GPS_POINT:
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if (get_angle_target_to_roi(mnt_target.angle_rad)) {
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mnt_target.target_type = MountTargetType::ANGLE;
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resend_now = true;
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}
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break;
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// point mount to Home location
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case MAV_MOUNT_MODE_HOME_LOCATION:
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if (get_angle_target_to_home(mnt_target.angle_rad)) {
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mnt_target.target_type = MountTargetType::ANGLE;
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resend_now = true;
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}
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break;
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// point mount to another vehicle
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case MAV_MOUNT_MODE_SYSID_TARGET:
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if (get_angle_target_to_sysid(mnt_target.angle_rad)) {
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mnt_target.target_type = MountTargetType::ANGLE;
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resend_now = true;
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}
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break;
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default:
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// we do not know this mode so do nothing
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break;
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}
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// resend target angles at least once per second
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if (resend_now || ((AP_HAL::millis() - _last_send) > AP_MOUNT_STORM32_RESEND_MS)) {
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send_do_mount_control(mnt_target.angle_rad);
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}
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}
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// get attitude as a quaternion. returns true on success
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bool AP_Mount_SToRM32::get_attitude_quaternion(Quaternion& att_quat)
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{
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att_quat.from_euler(mnt_target.angle_rad.roll, mnt_target.angle_rad.pitch, mnt_target.angle_rad.get_bf_yaw());
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return true;
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}
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// search for gimbal in GCS_MAVLink routing table
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void AP_Mount_SToRM32::find_gimbal()
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{
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// return immediately if initialised
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if (_initialised) {
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return;
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}
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// return if search time has has passed
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if (AP_HAL::millis() > AP_MOUNT_STORM32_SEARCH_MS) {
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return;
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}
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// we expect that instance 0 has compid = MAV_COMP_ID_GIMBAL, instance 1 has compid = MAV_COMP_ID_GIMBAL2, etc
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uint8_t compid = (_instance == 0) ? MAV_COMP_ID_GIMBAL : MAV_COMP_ID_GIMBAL2 + (_instance - 1);
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if (GCS_MAVLINK::find_by_mavtype_and_compid(MAV_TYPE_GIMBAL, compid, _sysid, _chan)) {
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_compid = compid;
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_initialised = true;
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GCS_SEND_TEXT(MAV_SEVERITY_INFO, "Mount: SToRM32");
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}
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}
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// send_do_mount_control - send a COMMAND_LONG containing a do_mount_control message
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void AP_Mount_SToRM32::send_do_mount_control(const MountTarget& angle_target_rad)
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{
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// exit immediately if not initialised
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if (!_initialised) {
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return;
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}
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// check we have space for the message
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if (!HAVE_PAYLOAD_SPACE(_chan, COMMAND_LONG)) {
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return;
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}
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// send command_long command containing a do_mount_control command
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// Note: pitch and yaw are reversed
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mavlink_msg_command_long_send(_chan,
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_sysid,
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_compid,
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MAV_CMD_DO_MOUNT_CONTROL,
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0, // confirmation of zero means this is the first time this message has been sent
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-degrees(angle_target_rad.pitch),
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degrees(angle_target_rad.roll),
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-degrees(angle_target_rad.get_bf_yaw()),
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0, 0, 0, // param4 ~ param6 unused
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MAV_MOUNT_MODE_MAVLINK_TARGETING);
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// store time of send
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_last_send = AP_HAL::millis();
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}
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#endif // HAL_MOUNT_STORM32MAVLINK_ENABLED
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