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@ -11136,7 +11136,7 @@ void set_current_from_steppers_for_axis(const AxisEnum axis) {
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// SERIAL_ECHOPAIR(" seconds=", seconds);
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// SERIAL_ECHOPAIR(" seconds=", seconds);
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// SERIAL_ECHOLNPAIR(" segments=", segments);
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// SERIAL_ECHOLNPAIR(" segments=", segments);
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#if IS_SCARA
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#if IS_SCARA && ENABLED(SCARA_FEEDRATE_SCALING)
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// SCARA needs to scale the feed rate from mm/s to degrees/s
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// SCARA needs to scale the feed rate from mm/s to degrees/s
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const float inv_segment_length = min(10.0, float(segments) / cartesian_mm), // 1/mm/segs
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const float inv_segment_length = min(10.0, float(segments) / cartesian_mm), // 1/mm/segs
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feed_factor = inv_segment_length * _feedrate_mm_s;
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feed_factor = inv_segment_length * _feedrate_mm_s;
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@ -11163,7 +11163,7 @@ void set_current_from_steppers_for_axis(const AxisEnum axis) {
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ADJUST_DELTA(logical); // Adjust Z if bed leveling is enabled
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ADJUST_DELTA(logical); // Adjust Z if bed leveling is enabled
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#if IS_SCARA
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#if IS_SCARA && ENABLED(SCARA_FEEDRATE_SCALING)
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// For SCARA scale the feed rate from mm/s to degrees/s
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// For SCARA scale the feed rate from mm/s to degrees/s
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// Use ratio between the length of the move and the larger angle change
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// Use ratio between the length of the move and the larger angle change
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const float adiff = abs(delta[A_AXIS] - oldA),
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const float adiff = abs(delta[A_AXIS] - oldA),
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@ -11179,7 +11179,7 @@ void set_current_from_steppers_for_axis(const AxisEnum axis) {
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// Since segment_distance is only approximate,
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// Since segment_distance is only approximate,
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// the final move must be to the exact destination.
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// the final move must be to the exact destination.
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#if IS_SCARA
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#if IS_SCARA && ENABLED(SCARA_FEEDRATE_SCALING)
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// For SCARA scale the feed rate from mm/s to degrees/s
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// For SCARA scale the feed rate from mm/s to degrees/s
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// With segments > 1 length is 1 segment, otherwise total length
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// With segments > 1 length is 1 segment, otherwise total length
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inverse_kinematics(ltarget);
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inverse_kinematics(ltarget);
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