Generalize Bed Leveling flag in EEPROM
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@ -65,11 +65,11 @@
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* 207 M218 XYZ hotend_offset (float x3 per additional hotend)
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* 207 M218 XYZ hotend_offset (float x3 per additional hotend)
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*
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*
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* Mesh bed leveling:
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* Mesh bed leveling:
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* 219 M420 S status (uint8)
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* 219 M420 S from mbl.status (bool)
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* 220 z_offset (float)
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* 220 mbl.z_offset (float)
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* 224 mesh_num_x (uint8 as set in firmware)
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* 224 MESH_NUM_X_POINTS (uint8 as set in firmware)
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* 225 mesh_num_y (uint8 as set in firmware)
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* 225 MESH_NUM_Y_POINTS (uint8 as set in firmware)
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* 226 G29 S3 XYZ z_values[][] (float x9, by default, up to float x 81)
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* 226 G29 S3 XYZ z_values[][] (float x9, by default, up to float x 81) +288
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*
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*
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* AUTO BED LEVELING
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* AUTO BED LEVELING
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* 262 M851 zprobe_zoffset (float)
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* 262 M851 zprobe_zoffset (float)
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@ -263,21 +263,19 @@ void Config_Postprocess() {
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#if ENABLED(MESH_BED_LEVELING)
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#if ENABLED(MESH_BED_LEVELING)
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// Compile time test that sizeof(mbl.z_values) is as expected
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// Compile time test that sizeof(mbl.z_values) is as expected
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typedef char c_assert[(sizeof(mbl.z_values) == (MESH_NUM_X_POINTS) * (MESH_NUM_Y_POINTS) * sizeof(dummy)) ? 1 : -1];
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typedef char c_assert[(sizeof(mbl.z_values) == (MESH_NUM_X_POINTS) * (MESH_NUM_Y_POINTS) * sizeof(dummy)) ? 1 : -1];
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uint8_t mesh_num_x = MESH_NUM_X_POINTS,
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const bool leveling_is_on = TEST(mbl.status, MBL_STATUS_HAS_MESH_BIT);
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mesh_num_y = MESH_NUM_Y_POINTS,
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const uint8_t mesh_num_x = MESH_NUM_X_POINTS, mesh_num_y = MESH_NUM_Y_POINTS;
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dummy_uint8 = mbl.status & _BV(MBL_STATUS_HAS_MESH_BIT);
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EEPROM_WRITE(leveling_is_on);
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EEPROM_WRITE(dummy_uint8);
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EEPROM_WRITE(mbl.z_offset);
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EEPROM_WRITE(mbl.z_offset);
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EEPROM_WRITE(mesh_num_x);
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EEPROM_WRITE(mesh_num_x);
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EEPROM_WRITE(mesh_num_y);
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EEPROM_WRITE(mesh_num_y);
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EEPROM_WRITE(mbl.z_values);
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EEPROM_WRITE(mbl.z_values);
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#else
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#else
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// For disabled MBL write a default mesh
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// For disabled MBL write a default mesh
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uint8_t mesh_num_x = 3,
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const bool leveling_is_on = false;
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mesh_num_y = 3,
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mbl_status = 0;
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dummy = 0.0f;
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dummy = 0.0f;
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EEPROM_WRITE(mbl_status);
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const uint8_t mesh_num_x = 3, mesh_num_y = 3;
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EEPROM_WRITE(leveling_is_on);
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EEPROM_WRITE(dummy); // z_offset
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EEPROM_WRITE(dummy); // z_offset
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EEPROM_WRITE(mesh_num_x);
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EEPROM_WRITE(mesh_num_x);
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EEPROM_WRITE(mesh_num_y);
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EEPROM_WRITE(mesh_num_y);
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@ -498,13 +496,15 @@ void Config_Postprocess() {
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// Mesh (Manual) Bed Leveling
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// Mesh (Manual) Bed Leveling
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//
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//
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uint8_t dummy_uint8, mesh_num_x, mesh_num_y;
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bool leveling_is_on;
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EEPROM_READ(dummy_uint8);
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uint8_t mesh_num_x, mesh_num_y;
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EEPROM_READ(leveling_is_on);
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EEPROM_READ(dummy);
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EEPROM_READ(dummy);
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EEPROM_READ(mesh_num_x);
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EEPROM_READ(mesh_num_x);
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EEPROM_READ(mesh_num_y);
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EEPROM_READ(mesh_num_y);
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#if ENABLED(MESH_BED_LEVELING)
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#if ENABLED(MESH_BED_LEVELING)
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mbl.status = dummy_uint8;
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mbl.status = leveling_is_on ? _BV(MBL_STATUS_HAS_MESH_BIT) : 0;
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mbl.z_offset = dummy;
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mbl.z_offset = dummy;
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if (mesh_num_x == MESH_NUM_X_POINTS && mesh_num_y == MESH_NUM_Y_POINTS) {
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if (mesh_num_x == MESH_NUM_X_POINTS && mesh_num_y == MESH_NUM_Y_POINTS) {
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// EEPROM data fits the current mesh
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// EEPROM data fits the current mesh
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@ -721,6 +721,7 @@ void Config_ResetDefault() {
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LOOP_XYZ(i) HOTEND_LOOP() hotend_offset[i][e] = tmp4[i][e];
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LOOP_XYZ(i) HOTEND_LOOP() hotend_offset[i][e] = tmp4[i][e];
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#endif
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#endif
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// Applies to all MBL and ABL
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#if PLANNER_LEVELING
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#if PLANNER_LEVELING
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reset_bed_level();
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reset_bed_level();
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#endif
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#endif
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