Account for UBL correction when setting the planner position (#11486)
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@ -2544,9 +2544,14 @@ void Planner::_set_position_mm(const float &a, const float &b, const float &c, c
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#if ENABLED(DISTINCT_E_FACTORS)
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last_extruder = active_extruder;
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#endif
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position[A_AXIS] = LROUND(a * axis_steps_per_mm[A_AXIS]),
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position[B_AXIS] = LROUND(b * axis_steps_per_mm[B_AXIS]),
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position[C_AXIS] = LROUND(c * axis_steps_per_mm[C_AXIS]),
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position[A_AXIS] = LROUND(a * axis_steps_per_mm[A_AXIS]);
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position[B_AXIS] = LROUND(b * axis_steps_per_mm[B_AXIS]);
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#if !IS_KINEMATIC && ENABLED(AUTO_BED_LEVELING_UBL)
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if (leveling_active)
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position[C_AXIS] = LROUND((c + ubl.get_z_correction(a, b)) * axis_steps_per_mm[Z_AXIS]);
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else
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#endif
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position[C_AXIS] = LROUND(c * axis_steps_per_mm[C_AXIS]);
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position[E_AXIS] = LROUND(e * axis_steps_per_mm[_EINDEX]);
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#if HAS_POSITION_FLOAT
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position_float[A_AXIS] = a;
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@ -2588,6 +2593,11 @@ void Planner::set_position_mm(const AxisEnum axis, const float &v) {
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#else
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const uint8_t axis_index = axis;
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#endif
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#if ENABLED(AUTO_BED_LEVELING_UBL)
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if (axis == Z_AXIS && leveling_active)
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position[axis] = LROUND((v + ubl.get_z_correction(current_position[X_AXIS], current_position[Y_AXIS])) * axis_steps_per_mm[axis_index]);
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else
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#endif
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position[axis] = LROUND(v * axis_steps_per_mm[axis_index]);
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#if HAS_POSITION_FLOAT
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position_float[axis] = v;
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