Copter: acro uses 0 to 1 throttle and sets desired spool state
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@ -10,7 +10,7 @@
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bool Copter::acro_init(bool ignore_checks)
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{
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// if landed and the mode we're switching from does not have manual throttle and the throttle stick is too high
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if (motors.armed() && ap.land_complete && !mode_has_manual_throttle(control_mode) && (g.rc_3.control_in > get_non_takeoff_throttle())) {
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if (motors.armed() && ap.land_complete && !mode_has_manual_throttle(control_mode) && (get_pilot_desired_throttle(channel_throttle->control_in) > get_non_takeoff_throttle())) {
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return false;
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}
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// set target altitude to zero for reporting
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@ -24,10 +24,11 @@ bool Copter::acro_init(bool ignore_checks)
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void Copter::acro_run()
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{
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float target_roll, target_pitch, target_yaw;
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int16_t pilot_throttle_scaled;
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float pilot_throttle_scaled;
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// if motors not running reset angle targets
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if(!motors.armed() || ap.throttle_zero) {
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// if not armed set throttle to zero and exit immediately
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if (!motors.armed() || ap.throttle_zero || !motors.get_interlock()) {
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motors.set_desired_spool_state(AP_MotorsMulticopter::DESIRED_SPIN_WHEN_ARMED);
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attitude_control.set_throttle_out_unstabilized(0,true,g.throttle_filt);
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// slow start if landed
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if (ap.land_complete) {
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@ -36,6 +37,8 @@ void Copter::acro_run()
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return;
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}
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motors.set_desired_spool_state(AP_MotorsMulticopter::DESIRED_THROTTLE_UNLIMITED);
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// convert the input to the desired body frame rate
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get_pilot_desired_angle_rates(channel_roll->control_in, channel_pitch->control_in, channel_yaw->control_in, target_roll, target_pitch, target_yaw);
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