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Update UBL param
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@ -57,7 +57,7 @@ typedef struct {
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xy_pos_t XY_pos;
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xy_pos_t XY_pos;
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xy_bool_t XY_seen;
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xy_bool_t XY_seen;
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#if HAS_BED_PROBE
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#if HAS_BED_PROBE
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int grid_size;
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uint8_t J_grid_size;
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#endif
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#endif
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} G29_parameters_t;
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} G29_parameters_t;
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@ -391,7 +391,7 @@ void unified_bed_leveling::G29() {
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if (parser.seen('J')) {
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if (parser.seen('J')) {
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save_ubl_active_state_and_disable();
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save_ubl_active_state_and_disable();
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tilt_mesh_based_on_probed_grid(param.grid_size == 0); // Zero size does 3-Point
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tilt_mesh_based_on_probed_grid(param.J_grid_size == 0); // Zero size does 3-Point
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restore_ubl_active_state_and_leave();
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restore_ubl_active_state_and_leave();
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#if ENABLED(UBL_G29_J_RECENTER)
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#if ENABLED(UBL_G29_J_RECENTER)
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do_blocking_move_to_xy(0.5f * ((MESH_MIN_X) + (MESH_MAX_X)), 0.5f * ((MESH_MIN_Y) + (MESH_MAX_Y)));
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do_blocking_move_to_xy(0.5f * ((MESH_MIN_X) + (MESH_MAX_X)), 0.5f * ((MESH_MIN_Y) + (MESH_MAX_Y)));
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@ -1118,8 +1118,8 @@ bool unified_bed_leveling::G29_parse_parameters() {
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if (parser.seen('J')) {
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if (parser.seen('J')) {
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#if HAS_BED_PROBE
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#if HAS_BED_PROBE
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param.grid_size = parser.has_value() ? parser.value_int() : 0;
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param.J_grid_size = parser.value_byte();
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if (param.grid_size && !WITHIN(param.grid_size, 2, 9)) {
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if (param.J_grid_size && !WITHIN(param.J_grid_size, 2, 9)) {
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SERIAL_ECHOLNPGM("?Invalid grid size (J) specified (2-9).\n");
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SERIAL_ECHOLNPGM("?Invalid grid size (J) specified (2-9).\n");
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err_flag = true;
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err_flag = true;
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}
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}
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@ -1420,8 +1420,8 @@ void unified_bed_leveling::smart_fill_mesh() {
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void unified_bed_leveling::tilt_mesh_based_on_probed_grid(const bool do_3_pt_leveling) {
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void unified_bed_leveling::tilt_mesh_based_on_probed_grid(const bool do_3_pt_leveling) {
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const float x_min = probe.min_x(), x_max = probe.max_x(),
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const float x_min = probe.min_x(), x_max = probe.max_x(),
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y_min = probe.min_y(), y_max = probe.max_y(),
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y_min = probe.min_y(), y_max = probe.max_y(),
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dx = (x_max - x_min) / (param.grid_size - 1),
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dx = (x_max - x_min) / (param.J_grid_size - 1),
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dy = (y_max - y_min) / (param.grid_size - 1);
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dy = (y_max - y_min) / (param.J_grid_size - 1);
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xy_float_t points[3];
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xy_float_t points[3];
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probe.get_three_points(points);
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probe.get_three_points(points);
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@ -1507,14 +1507,14 @@ void unified_bed_leveling::smart_fill_mesh() {
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bool zig_zag = false;
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bool zig_zag = false;
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const uint16_t total_points = sq(param.grid_size);
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const uint16_t total_points = sq(param.J_grid_size);
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uint16_t point_num = 1;
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uint16_t point_num = 1;
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xy_pos_t rpos;
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xy_pos_t rpos;
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LOOP_L_N(ix, param.grid_size) {
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LOOP_L_N(ix, param.J_grid_size) {
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rpos.x = x_min + ix * dx;
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rpos.x = x_min + ix * dx;
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LOOP_L_N(iy, param.grid_size) {
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LOOP_L_N(iy, param.J_grid_size) {
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rpos.y = y_min + dy * (zig_zag ? param.grid_size - 1 - iy : iy);
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rpos.y = y_min + dy * (zig_zag ? param.J_grid_size - 1 - iy : iy);
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if (!abort_flag) {
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if (!abort_flag) {
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SERIAL_ECHOLNPAIR("Tilting mesh point ", point_num, "/", total_points, "\n");
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SERIAL_ECHOLNPAIR("Tilting mesh point ", point_num, "/", total_points, "\n");
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