Fix EEPROM V45 header, layout
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94e6b2976e
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@ -42,15 +42,15 @@
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#define EEPROM_OFFSET 100
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#define EEPROM_OFFSET 100
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/**
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/**
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* V44 EEPROM Layout:
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* V45 EEPROM Layout:
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*
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*
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* 100 Version (char x4)
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* 100 Version (char x4)
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* 104 EEPROM CRC16 (uint16_t)
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* 104 EEPROM CRC16 (uint16_t)
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*
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*
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* 106 E_STEPPERS (uint8_t)
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* 106 E_STEPPERS (uint8_t)
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* 107 M92 XYZE planner.axis_steps_per_mm (float x4 ... x8)
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* 107 M92 XYZE planner.axis_steps_per_mm (float x4 ... x8) + 64
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* 123 M203 XYZE planner.max_feedrate_mm_s (float x4 ... x8)
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* 123 M203 XYZE planner.max_feedrate_mm_s (float x4 ... x8) + 64
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* 139 M201 XYZE planner.max_acceleration_mm_per_s2 (uint32_t x4 ... x8)
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* 139 M201 XYZE planner.max_acceleration_mm_per_s2 (uint32_t x4 ... x8) + 64
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* 155 M204 P planner.acceleration (float)
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* 155 M204 P planner.acceleration (float)
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* 159 M204 R planner.retract_acceleration (float)
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* 159 M204 R planner.retract_acceleration (float)
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* 163 M204 T planner.travel_acceleration (float)
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* 163 M204 T planner.travel_acceleration (float)
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@ -62,7 +62,7 @@
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* 187 M205 Z planner.max_jerk[Z_AXIS] (float)
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* 187 M205 Z planner.max_jerk[Z_AXIS] (float)
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* 191 M205 E planner.max_jerk[E_AXIS] (float)
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* 191 M205 E planner.max_jerk[E_AXIS] (float)
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* 195 M206 XYZ home_offset (float x3)
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* 195 M206 XYZ home_offset (float x3)
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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) +16
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*
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*
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* Global Leveling: 4 bytes
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* Global Leveling: 4 bytes
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* 219 z_fade_height (float)
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* 219 z_fade_height (float)
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@ -88,86 +88,86 @@
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* 316 z_values[][] (float x9, up to float x256) +988
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* 316 z_values[][] (float x9, up to float x256) +988
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*
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*
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* AUTO_BED_LEVELING_UBL: 2 bytes
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* AUTO_BED_LEVELING_UBL: 2 bytes
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* 324 G29 A planner.leveling_active (bool)
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* 352 G29 A planner.leveling_active (bool)
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* 325 G29 S ubl.storage_slot (int8_t)
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* 353 G29 S ubl.storage_slot (int8_t)
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*
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*
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* DELTA: 44 bytes
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* DELTA: 44 bytes
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* 352 M666 H delta_height (float)
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* 354 M666 H delta_height (float)
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* 364 M666 XYZ delta_endstop_adj (float x3)
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* 358 M666 XYZ delta_endstop_adj (float x3)
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* 368 M665 R delta_radius (float)
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* 370 M665 R delta_radius (float)
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* 372 M665 L delta_diagonal_rod (float)
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* 374 M665 L delta_diagonal_rod (float)
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* 376 M665 S delta_segments_per_second (float)
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* 378 M665 S delta_segments_per_second (float)
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* 380 M665 B delta_calibration_radius (float)
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* 382 M665 B delta_calibration_radius (float)
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* 384 M665 X delta_tower_angle_trim[A] (float)
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* 386 M665 X delta_tower_angle_trim[A] (float)
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* 388 M665 Y delta_tower_angle_trim[B] (float)
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* 390 M665 Y delta_tower_angle_trim[B] (float)
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* 392 M665 Z delta_tower_angle_trim[C] (float)
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* 394 M665 Z delta_tower_angle_trim[C] (float)
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*
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*
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* [XYZ]_DUAL_ENDSTOPS: 12 bytes
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* [XYZ]_DUAL_ENDSTOPS: 12 bytes
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* 352 M666 X endstops.x_endstop_adj (float)
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* 354 M666 X x_endstop_adj (float)
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* 356 M666 Y endstops.y_endstop_adj (float)
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* 358 M666 Y y_endstop_adj (float)
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* 360 M666 Z endstops.z_endstop_adj (float)
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* 362 M666 Z z_endstop_adj (float)
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*
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*
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* ULTIPANEL: 6 bytes
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* ULTIPANEL: 6 bytes
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* 396 M145 S0 H lcd_preheat_hotend_temp (int x2)
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* 398 M145 S0 H lcd_preheat_hotend_temp (int x2)
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* 400 M145 S0 B lcd_preheat_bed_temp (int x2)
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* 402 M145 S0 B lcd_preheat_bed_temp (int x2)
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* 404 M145 S0 F lcd_preheat_fan_speed (int x2)
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* 406 M145 S0 F lcd_preheat_fan_speed (int x2)
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*
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*
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* PIDTEMP: 82 bytes
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* PIDTEMP: 82 bytes
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* 408 M301 E0 PIDC Kp[0], Ki[0], Kd[0], Kc[0] (float x4)
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* 410 M301 E0 PIDC Kp[0], Ki[0], Kd[0], Kc[0] (float x4)
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* 428 M301 E1 PIDC Kp[1], Ki[1], Kd[1], Kc[1] (float x4)
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* 426 M301 E1 PIDC Kp[1], Ki[1], Kd[1], Kc[1] (float x4)
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* 440 M301 E2 PIDC Kp[2], Ki[2], Kd[2], Kc[2] (float x4)
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* 442 M301 E2 PIDC Kp[2], Ki[2], Kd[2], Kc[2] (float x4)
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* 456 M301 E3 PIDC Kp[3], Ki[3], Kd[3], Kc[3] (float x4)
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* 458 M301 E3 PIDC Kp[3], Ki[3], Kd[3], Kc[3] (float x4)
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* 472 M301 E4 PIDC Kp[3], Ki[3], Kd[3], Kc[3] (float x4)
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* 474 M301 E4 PIDC Kp[3], Ki[3], Kd[3], Kc[3] (float x4)
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* 488 M301 L lpq_len (int)
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* 490 M301 L lpq_len (int)
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*
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*
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* PIDTEMPBED: 12 bytes
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* PIDTEMPBED: 12 bytes
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* 490 M304 PID thermalManager.bedKp, .bedKi, .bedKd (float x3)
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* 492 M304 PID bedKp, .bedKi, .bedKd (float x3)
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*
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*
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* DOGLCD: 2 bytes
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* DOGLCD: 2 bytes
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* 502 M250 C lcd_contrast (uint16_t)
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* 504 M250 C lcd_contrast (uint16_t)
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*
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*
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* FWRETRACT: 33 bytes
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* FWRETRACT: 33 bytes
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* 504 M209 S autoretract_enabled (bool)
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* 506 M209 S autoretract_enabled (bool)
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* 505 M207 S retract_length (float)
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* 507 M207 S retract_length (float)
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* 509 M207 F retract_feedrate_mm_s (float)
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* 511 M207 F retract_feedrate_mm_s (float)
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* 513 M207 Z retract_zlift (float)
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* 515 M207 Z retract_zlift (float)
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* 517 M208 S retract_recover_length (float)
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* 519 M208 S retract_recover_length (float)
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* 521 M208 F retract_recover_feedrate_mm_s (float)
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* 523 M208 F retract_recover_feedrate_mm_s (float)
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* 525 M207 W swap_retract_length (float)
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* 527 M207 W swap_retract_length (float)
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* 529 M208 W swap_retract_recover_length (float)
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* 531 M208 W swap_retract_recover_length (float)
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* 533 M208 R swap_retract_recover_feedrate_mm_s (float)
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* 535 M208 R swap_retract_recover_feedrate_mm_s (float)
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*
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*
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* Volumetric Extrusion: 21 bytes
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* Volumetric Extrusion: 21 bytes
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* 537 M200 D parser.volumetric_enabled (bool)
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* 539 M200 D parser.volumetric_enabled (bool)
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* 538 M200 T D planner.filament_size (float x5) (T0..3)
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* 540 M200 T D planner.filament_size (float x5) (T0..3)
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*
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*
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* HAVE_TMC2130: 22 bytes
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* HAVE_TMC2130: 22 bytes
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* 558 M906 X Stepper X current (uint16_t)
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* 560 M906 X Stepper X current (uint16_t)
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* 560 M906 Y Stepper Y current (uint16_t)
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* 562 M906 Y Stepper Y current (uint16_t)
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* 562 M906 Z Stepper Z current (uint16_t)
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* 564 M906 Z Stepper Z current (uint16_t)
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* 564 M906 X2 Stepper X2 current (uint16_t)
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* 566 M906 X2 Stepper X2 current (uint16_t)
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* 566 M906 Y2 Stepper Y2 current (uint16_t)
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* 568 M906 Y2 Stepper Y2 current (uint16_t)
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* 568 M906 Z2 Stepper Z2 current (uint16_t)
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* 570 M906 Z2 Stepper Z2 current (uint16_t)
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* 570 M906 E0 Stepper E0 current (uint16_t)
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* 572 M906 E0 Stepper E0 current (uint16_t)
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* 572 M906 E1 Stepper E1 current (uint16_t)
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* 574 M906 E1 Stepper E1 current (uint16_t)
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* 574 M906 E2 Stepper E2 current (uint16_t)
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* 576 M906 E2 Stepper E2 current (uint16_t)
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* 576 M906 E3 Stepper E3 current (uint16_t)
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* 578 M906 E3 Stepper E3 current (uint16_t)
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* 578 M906 E4 Stepper E4 current (uint16_t)
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* 580 M906 E4 Stepper E4 current (uint16_t)
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*
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*
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* LIN_ADVANCE: 8 bytes
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* LIN_ADVANCE: 8 bytes
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* 580 M900 K extruder_advance_k (float)
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* 582 M900 K extruder_advance_k (float)
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* 584 M900 WHD advance_ed_ratio (float)
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* 586 M900 WHD advance_ed_ratio (float)
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*
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*
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* HAS_MOTOR_CURRENT_PWM:
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* HAS_MOTOR_CURRENT_PWM:
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* 588 M907 X Stepper XY current (uint32_t)
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* 590 M907 X Stepper XY current (uint32_t)
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* 592 M907 Z Stepper Z current (uint32_t)
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* 594 M907 Z Stepper Z current (uint32_t)
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* 596 M907 E Stepper E current (uint32_t)
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* 598 M907 E Stepper E current (uint32_t)
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*
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*
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* CNC_COORDINATE_SYSTEMS 108 bytes
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* CNC_COORDINATE_SYSTEMS 108 bytes
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* 600 G54-G59.3 coordinate_system (float x 27)
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* 602 G54-G59.3 coordinate_system (float x 27)
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*
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*
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* 708 Minimum end-point
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* 710 Minimum end-point
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* 2025 (704 + 36 + 9 + 288 + 988) Maximum end-point
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* 2239 (710 + 208 + 36 + 9 + 288 + 988) Maximum end-point
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*
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*
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* ========================================================================
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* ========================================================================
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* meshes_begin (between max and min end-point, directly above)
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* meshes_begin (between max and min end-point, directly above)
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@ -422,7 +422,7 @@ void MarlinSettings::postprocess() {
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EEPROM_WRITE(storage_slot);
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EEPROM_WRITE(storage_slot);
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#endif // AUTO_BED_LEVELING_UBL
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#endif // AUTO_BED_LEVELING_UBL
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// 10 floats for DELTA / [XYZ]_DUAL_ENDSTOPS
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// 11 floats for DELTA / [XYZ]_DUAL_ENDSTOPS
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#if ENABLED(DELTA)
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#if ENABLED(DELTA)
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EEPROM_WRITE(delta_height); // 1 float
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EEPROM_WRITE(delta_height); // 1 float
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EEPROM_WRITE(delta_endstop_adj); // 3 floats
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EEPROM_WRITE(delta_endstop_adj); // 3 floats
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@ -453,11 +453,11 @@ void MarlinSettings::postprocess() {
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EEPROM_WRITE(dummy);
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EEPROM_WRITE(dummy);
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#endif
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#endif
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for (uint8_t q = 7; q--;) EEPROM_WRITE(dummy);
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for (uint8_t q = 8; q--;) EEPROM_WRITE(dummy);
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#else
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#else
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dummy = 0.0f;
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dummy = 0.0f;
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for (uint8_t q = 10; q--;) EEPROM_WRITE(dummy);
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for (uint8_t q = 11; q--;) EEPROM_WRITE(dummy);
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#endif
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#endif
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#if DISABLED(ULTIPANEL)
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#if DISABLED(ULTIPANEL)
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