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@ -448,7 +448,7 @@ |
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y_pos = current_position[Y_AXIS]; |
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y_pos = current_position[Y_AXIS]; |
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} |
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} |
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float height = code_seen('H') && code_has_value() ? code_value_float() : Z_CLEARANCE_BETWEEN_PROBES; |
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float height = Z_CLEARANCE_BETWEEN_PROBES; |
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if (code_seen('B')) { |
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if (code_seen('B')) { |
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card_thickness = code_has_value() ? code_value_float() : measure_business_card_thickness(height); |
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card_thickness = code_has_value() ? code_value_float() : measure_business_card_thickness(height); |
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@ -458,9 +458,11 @@ |
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return; |
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return; |
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} |
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} |
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} |
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} |
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if (code_seen('H') && code_has_value()) height = code_value_float(); |
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manually_probe_remaining_mesh(x_pos, y_pos, height, card_thickness, code_seen('O') || code_seen('M')); |
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manually_probe_remaining_mesh(x_pos, y_pos, height, card_thickness, code_seen('O') || code_seen('M')); |
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SERIAL_PROTOCOLLNPGM("G29 P2 finished."); |
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SERIAL_PROTOCOLLNPGM("G29 P2 finished."); |
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} break; |
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} break; |
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case 3: { |
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case 3: { |
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@ -887,9 +889,9 @@ |
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do_blocking_move_to_z(in_height); |
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do_blocking_move_to_z(in_height); |
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do_blocking_move_to_xy(0.5 * (UBL_MESH_MAX_X - (UBL_MESH_MIN_X)), 0.5 * (UBL_MESH_MAX_Y - (UBL_MESH_MIN_Y))); |
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do_blocking_move_to_xy(0.5 * (UBL_MESH_MAX_X - (UBL_MESH_MIN_X)), 0.5 * (UBL_MESH_MAX_Y - (UBL_MESH_MIN_Y))); |
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//, min(planner.max_feedrate_mm_s[X_AXIS], planner.max_feedrate_mm_s[Y_AXIS]) / 2.0);
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//, min(planner.max_feedrate_mm_s[X_AXIS], planner.max_feedrate_mm_s[Y_AXIS]) / 2.0);
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stepper.synchronize(); |
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stepper.synchronize(); |
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SERIAL_PROTOCOLPGM("Place shim under nozzle."); |
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SERIAL_PROTOCOLPGM("Place shim under nozzle"); |
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LCD_MESSAGEPGM("Place shim & measure"); |
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LCD_MESSAGEPGM("Place shim & measure"); |
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lcd_goto_screen(lcd_status_screen); |
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lcd_goto_screen(lcd_status_screen); |
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say_and_take_a_measurement(); |
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say_and_take_a_measurement(); |
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@ -898,35 +900,39 @@ |
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do_blocking_move_to_z(current_position[Z_AXIS] + SIZE_OF_LITTLE_RAISE); |
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do_blocking_move_to_z(current_position[Z_AXIS] + SIZE_OF_LITTLE_RAISE); |
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stepper.synchronize(); |
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stepper.synchronize(); |
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SERIAL_PROTOCOLPGM("Remove shim."); |
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SERIAL_PROTOCOLPGM("Remove shim"); |
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LCD_MESSAGEPGM("Remove & measure"); |
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LCD_MESSAGEPGM("Remove & measure bed"); |
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say_and_take_a_measurement(); |
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say_and_take_a_measurement(); |
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const float z2 = use_encoder_wheel_to_measure_point(); |
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const float z2 = use_encoder_wheel_to_measure_point(); |
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do_blocking_move_to_z(current_position[Z_AXIS] + Z_CLEARANCE_BETWEEN_PROBES); |
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do_blocking_move_to_z(current_position[Z_AXIS] + Z_CLEARANCE_BETWEEN_PROBES); |
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const float thickness = abs(z1 - z2); |
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if (g29_verbose_level > 1) { |
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if (g29_verbose_level > 1) { |
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SERIAL_PROTOCOLPGM("Business Card is: "); |
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SERIAL_PROTOCOLPGM("Business Card is "); |
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SERIAL_PROTOCOL_F(abs(z1 - z2), 6); |
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SERIAL_PROTOCOL_F(thickness, 4); |
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SERIAL_PROTOCOLLNPGM("mm thick."); |
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SERIAL_PROTOCOLLNPGM("mm thick."); |
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} |
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} |
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in_height = current_position[Z_AXIS]; // do manual probing at lower height
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in_height = current_position[Z_AXIS]; // do manual probing at lower height
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ubl.has_control_of_lcd_panel = false; |
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ubl.has_control_of_lcd_panel = false; |
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ubl.restore_ubl_active_state_and_leave(); |
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ubl.restore_ubl_active_state_and_leave(); |
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return abs(z1 - z2); |
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return thickness; |
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} |
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} |
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void manually_probe_remaining_mesh(const float &lx, const float &ly, float &z_clearance, const float &card_thickness, const bool do_ubl_mesh_map) { |
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void manually_probe_remaining_mesh(const float &lx, const float &ly, float &z_clearance, const float &card_thickness, const bool do_ubl_mesh_map) { |
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ubl.has_control_of_lcd_panel = true; |
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ubl.has_control_of_lcd_panel = true; |
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ubl.save_ubl_active_state_and_disable(); // we don't do bed level correction because we want the raw data when we probe
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ubl.save_ubl_active_state_and_disable(); // we don't do bed level correction because we want the raw data when we probe
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do_blocking_move_to_z(z_clearance); |
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do_blocking_move_to_z(Z_CLEARANCE_BETWEEN_PROBES); |
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do_blocking_move_to_xy(lx, ly); |
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do_blocking_move_to_xy(lx, ly); |
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lcd_goto_screen(lcd_status_screen); |
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lcd_goto_screen(lcd_status_screen); |
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float last_x = -9999.99, last_y = -9999.99; |
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mesh_index_pair location; |
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mesh_index_pair location; |
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do { |
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do { |
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location = find_closest_mesh_point_of_type(INVALID, lx, ly, USE_NOZZLE_AS_REFERENCE, NULL, false); |
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location = find_closest_mesh_point_of_type(INVALID, lx, ly, USE_NOZZLE_AS_REFERENCE, NULL, false); |
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@ -945,25 +951,20 @@ |
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} |
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} |
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const float xProbe = LOGICAL_X_POSITION(rawx), |
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const float xProbe = LOGICAL_X_POSITION(rawx), |
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yProbe = LOGICAL_Y_POSITION(rawy), |
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yProbe = LOGICAL_Y_POSITION(rawy); |
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dx = xProbe - last_x, |
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dy = yProbe - last_y; |
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do_blocking_move_to_z(Z_CLEARANCE_BETWEEN_PROBES); |
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if (HYPOT(dx, dy) < BIG_RAISE_NOT_NEEDED) |
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do_blocking_move_to_z(current_position[Z_AXIS] + SIZE_OF_LITTLE_RAISE); |
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else |
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do_blocking_move_to_z(z_clearance); |
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LCD_MESSAGEPGM("Moving to next"); |
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LCD_MESSAGEPGM("Moving to next"); |
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do_blocking_move_to_xy(xProbe, yProbe); |
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do_blocking_move_to_xy(xProbe, yProbe); |
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do_blocking_move_to_z(z_clearance); |
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last_x = xProbe; |
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last_y = yProbe; |
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KEEPALIVE_STATE(PAUSED_FOR_USER); |
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KEEPALIVE_STATE(PAUSED_FOR_USER); |
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ubl.has_control_of_lcd_panel = true; |
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ubl.has_control_of_lcd_panel = true; |
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if (do_ubl_mesh_map) ubl.display_map(map_type); // show user where we're probing
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if (do_ubl_mesh_map) ubl.display_map(map_type); // show user where we're probing
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if (code_seen('B')) {LCD_MESSAGEPGM("Place shim & measure");} |
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if (code_seen('B')) {LCD_MESSAGEPGM("Place shim & measure");} |
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else {LCD_MESSAGEPGM("Measure");} |
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else {LCD_MESSAGEPGM("Measure");} |
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