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@ -226,6 +226,7 @@ void Config_StoreSettings() {
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EEPROM_WRITE_VAR(i, mesh_num_y);
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EEPROM_WRITE_VAR(i, mesh_num_y);
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EEPROM_WRITE_VAR(i, mbl.z_values);
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EEPROM_WRITE_VAR(i, 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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uint8_t mesh_num_x = 3,
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uint8_t mesh_num_x = 3,
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mesh_num_y = 3,
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mesh_num_y = 3,
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dummy_uint8 = 0;
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dummy_uint8 = 0;
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@ -242,6 +243,7 @@ void Config_StoreSettings() {
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#endif
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#endif
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EEPROM_WRITE_VAR(i, zprobe_zoffset);
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EEPROM_WRITE_VAR(i, zprobe_zoffset);
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// 9 floats for DELTA / Z_DUAL_ENDSTOPS
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#if ENABLED(DELTA)
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#if ENABLED(DELTA)
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EEPROM_WRITE_VAR(i, endstop_adj); // 3 floats
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EEPROM_WRITE_VAR(i, endstop_adj); // 3 floats
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EEPROM_WRITE_VAR(i, delta_radius); // 1 float
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EEPROM_WRITE_VAR(i, delta_radius); // 1 float
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@ -409,12 +411,16 @@ void Config_RetrieveSettings() {
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mbl.status = dummy_uint8;
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mbl.status = dummy_uint8;
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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_READ_VAR(i, mbl.z_values);
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EEPROM_READ_VAR(i, mbl.z_values);
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} else {
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}
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else {
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// EEPROM data is stale
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mbl.reset();
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mbl.reset();
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for (uint8_t q = 0; q < mesh_num_x * mesh_num_y; q++) EEPROM_READ_VAR(i, dummy);
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for (uint8_t q = 0; q < mesh_num_x * mesh_num_y; q++) EEPROM_READ_VAR(i, dummy);
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}
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}
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#else
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#else
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// MBL is disabled - skip the stored data
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for (uint8_t q = 0; q < mesh_num_x * mesh_num_y; q++) EEPROM_READ_VAR(i, dummy);
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for (uint8_t q = 0; q < mesh_num_x * mesh_num_y; q++) EEPROM_READ_VAR(i, dummy);
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#endif // MESH_BED_LEVELING
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#endif // MESH_BED_LEVELING
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