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Omit unused UBL motion code
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@ -321,8 +321,11 @@ class unified_bed_leveling {
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return i < GRID_MAX_POINTS_Y ? pgm_read_float(&_mesh_index_to_ypos[i]) : MESH_MIN_Y + i * (MESH_Y_DIST);
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}
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static void line_to_destination_cartesian(const float &fr, const uint8_t e);
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static bool prepare_segmented_line_to(const float (&rtarget)[XYZE], const float &feedrate);
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#if UBL_SEGMENTED
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static bool prepare_segmented_line_to(const float (&rtarget)[XYZE], const float &feedrate);
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#else
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static void line_to_destination_cartesian(const float &fr, const uint8_t e);
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#endif
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#define _CMPZ(a,b) (z_values[a][b] == z_values[a][b+1])
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#define CMPZ(a) (_CMPZ(a, 0) && _CMPZ(a, 1))
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@ -41,6 +41,8 @@
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extern void set_current_from_destination();
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#endif
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#if !UBL_SEGMENTED
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void unified_bed_leveling::line_to_destination_cartesian(const float &feed_rate, const uint8_t extruder) {
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/**
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* Much of the nozzle movement will be within the same cell. So we will do as little computation
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@ -405,7 +407,7 @@
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set_current_from_destination();
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}
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#if UBL_SEGMENTED
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#else // UBL_SEGMENTED
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#if IS_SCARA // scale the feed rate from mm/s to degrees/s
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static float scara_feed_factor, scara_oldA, scara_oldB;
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@ -621,6 +623,6 @@
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} // cell loop
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}
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#endif // UBL_SEGMENTED
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#endif // UBL_SEGMENTED
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#endif // AUTO_BED_LEVELING_UBL
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