My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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menu_advanced.cpp 20KB

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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (c) 2019 MarlinFirmware [https://github.com/MarlinFirmware/Marlin]
  4. *
  5. * Based on Sprinter and grbl.
  6. * Copyright (c) 2011 Camiel Gubbels / Erik van der Zalm
  7. *
  8. * This program is free software: you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License as published by
  10. * the Free Software Foundation, either version 3 of the License, or
  11. * (at your option) any later version.
  12. *
  13. * This program is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  16. * GNU General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU General Public License
  19. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  20. *
  21. */
  22. //
  23. // Advanced Settings Menus
  24. //
  25. #include "../../inc/MarlinConfigPre.h"
  26. #if HAS_LCD_MENU
  27. #include "menu.h"
  28. #include "../../module/planner.h"
  29. #if DISABLED(NO_VOLUMETRICS)
  30. #include "../../gcode/parser.h"
  31. #endif
  32. #if HAS_BED_PROBE
  33. #include "../../module/probe.h"
  34. #endif
  35. #if ENABLED(PIDTEMP)
  36. #include "../../module/temperature.h"
  37. #endif
  38. #if ENABLED(FILAMENT_RUNOUT_SENSOR) && FILAMENT_RUNOUT_DISTANCE_MM
  39. #include "../../feature/runout.h"
  40. float lcd_runout_distance_mm;
  41. #endif
  42. #if ENABLED(EEPROM_SETTINGS) && DISABLED(SLIM_LCD_MENUS)
  43. #include "../../module/configuration_store.h"
  44. #endif
  45. void menu_tmc();
  46. void menu_backlash();
  47. void menu_cancelobject();
  48. #if ENABLED(DAC_STEPPER_CURRENT)
  49. #include "../../feature/dac/stepper_dac.h"
  50. void menu_dac() {
  51. static xyze_uint8_t driverPercent;
  52. LOOP_XYZE(i) driverPercent[i] = dac_current_get_percent((AxisEnum)i);
  53. START_MENU();
  54. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  55. #define EDIT_DAC_PERCENT(A) EDIT_ITEM(uint8, MSG_DAC_PERCENT_##A, &driverPercent[_AXIS(A)], 0, 100, []{ dac_current_set_percents(driverPercent); })
  56. EDIT_DAC_PERCENT(X);
  57. EDIT_DAC_PERCENT(Y);
  58. EDIT_DAC_PERCENT(Z);
  59. EDIT_DAC_PERCENT(E);
  60. ACTION_ITEM(MSG_DAC_EEPROM_WRITE, dac_commit_eeprom);
  61. END_MENU();
  62. }
  63. #endif
  64. #if HAS_MOTOR_CURRENT_PWM
  65. #include "../../module/stepper.h"
  66. void menu_pwm() {
  67. START_MENU();
  68. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  69. #define EDIT_CURRENT_PWM(LABEL,I) EDIT_ITEM_P(long5, PSTR(LABEL), &stepper.motor_current_setting[I], 100, 2000, stepper.refresh_motor_power)
  70. #if PIN_EXISTS(MOTOR_CURRENT_PWM_XY)
  71. EDIT_CURRENT_PWM(MSG_X MSG_Y, 0);
  72. #endif
  73. #if PIN_EXISTS(MOTOR_CURRENT_PWM_Z)
  74. EDIT_CURRENT_PWM(MSG_Z, 1);
  75. #endif
  76. #if PIN_EXISTS(MOTOR_CURRENT_PWM_E)
  77. EDIT_CURRENT_PWM(MSG_E, 2);
  78. #endif
  79. END_MENU();
  80. }
  81. #endif
  82. #if ENABLED(SD_FIRMWARE_UPDATE)
  83. #include "../../module/configuration_store.h"
  84. #endif
  85. #if DISABLED(NO_VOLUMETRICS) || ENABLED(ADVANCED_PAUSE_FEATURE)
  86. //
  87. // Advanced Settings > Filament
  88. //
  89. void menu_advanced_filament() {
  90. START_MENU();
  91. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  92. #if ENABLED(LIN_ADVANCE)
  93. #if EXTRUDERS == 1
  94. EDIT_ITEM(float52, MSG_ADVANCE_K, &planner.extruder_advance_K[0], 0, 999);
  95. #elif EXTRUDERS > 1
  96. for (uint8_t n = 0; n < EXTRUDERS; n++)
  97. EDIT_ITEM_N(float52, n, MSG_ADVANCE_K_E, &planner.extruder_advance_K[n], 0, 999);
  98. #endif
  99. #endif
  100. #if DISABLED(NO_VOLUMETRICS)
  101. EDIT_ITEM(bool, MSG_VOLUMETRIC_ENABLED, &parser.volumetric_enabled, planner.calculate_volumetric_multipliers);
  102. if (parser.volumetric_enabled) {
  103. EDIT_ITEM_FAST(float43, MSG_FILAMENT_DIAM, &planner.filament_size[active_extruder], 1.5f, 3.25f, planner.calculate_volumetric_multipliers);
  104. #if EXTRUDERS > 1
  105. for (uint8_t n = 0; n < EXTRUDERS; n++)
  106. EDIT_ITEM_FAST_N(float43, n, MSG_FILAMENT_DIAM_E, &planner.filament_size[n], 1.5f, 3.25f, planner.calculate_volumetric_multipliers);
  107. #endif
  108. }
  109. #endif
  110. #if ENABLED(ADVANCED_PAUSE_FEATURE)
  111. constexpr float extrude_maxlength =
  112. #if ENABLED(PREVENT_LENGTHY_EXTRUDE)
  113. EXTRUDE_MAXLENGTH
  114. #else
  115. 999
  116. #endif
  117. ;
  118. EDIT_ITEM_FAST(float3, MSG_FILAMENT_UNLOAD, &fc_settings[active_extruder].unload_length, 0, extrude_maxlength);
  119. #if EXTRUDERS > 1
  120. for (uint8_t n = 0; n < EXTRUDERS; n++)
  121. EDIT_ITEM_FAST_N(float3, n, MSG_FILAMENTUNLOAD_E, &fc_settings[n].unload_length, 0, extrude_maxlength);
  122. #endif
  123. EDIT_ITEM_FAST(float3, MSG_FILAMENT_LOAD, &fc_settings[active_extruder].load_length, 0, extrude_maxlength);
  124. #if EXTRUDERS > 1
  125. for (uint8_t n = 0; n < EXTRUDERS; n++)
  126. EDIT_ITEM_FAST_N(float3, n, MSG_FILAMENTLOAD_E, &fc_settings[n].load_length, 0, extrude_maxlength);
  127. #endif
  128. #endif
  129. #if ENABLED(FILAMENT_RUNOUT_SENSOR) && FILAMENT_RUNOUT_DISTANCE_MM
  130. EDIT_ITEM(float3, MSG_RUNOUT_DISTANCE_MM, &lcd_runout_distance_mm, 1, 30, []{
  131. runout.set_runout_distance(lcd_runout_distance_mm);
  132. });
  133. #endif
  134. END_MENU();
  135. }
  136. #endif // !NO_VOLUMETRICS || ADVANCED_PAUSE_FEATURE
  137. //
  138. // Advanced Settings > Temperature helpers
  139. //
  140. #if ENABLED(PID_AUTOTUNE_MENU)
  141. #if ENABLED(PIDTEMP)
  142. int16_t autotune_temp[HOTENDS] = ARRAY_BY_HOTENDS1(150);
  143. #endif
  144. #if ENABLED(PIDTEMPBED)
  145. int16_t autotune_temp_bed = 70;
  146. #endif
  147. void _lcd_autotune(const int16_t e) {
  148. char cmd[30];
  149. sprintf_P(cmd, PSTR("M303 U1 E%i S%i"), e,
  150. #if HAS_PID_FOR_BOTH
  151. e < 0 ? autotune_temp_bed : autotune_temp[e]
  152. #elif ENABLED(PIDTEMPBED)
  153. autotune_temp_bed
  154. #else
  155. autotune_temp[e]
  156. #endif
  157. );
  158. lcd_enqueue_one_now(cmd);
  159. }
  160. #endif // PID_AUTOTUNE_MENU
  161. #if ENABLED(PID_EDIT_MENU)
  162. float raw_Ki, raw_Kd; // place-holders for Ki and Kd edits
  163. // Helpers for editing PID Ki & Kd values
  164. // grab the PID value out of the temp variable; scale it; then update the PID driver
  165. void copy_and_scalePID_i(int16_t e) {
  166. #if DISABLED(PID_PARAMS_PER_HOTEND) || HOTENDS == 1
  167. UNUSED(e);
  168. #endif
  169. PID_PARAM(Ki, e) = scalePID_i(raw_Ki);
  170. thermalManager.updatePID();
  171. }
  172. void copy_and_scalePID_d(int16_t e) {
  173. #if DISABLED(PID_PARAMS_PER_HOTEND) || HOTENDS == 1
  174. UNUSED(e);
  175. #endif
  176. PID_PARAM(Kd, e) = scalePID_d(raw_Kd);
  177. thermalManager.updatePID();
  178. }
  179. #define _DEFINE_PIDTEMP_BASE_FUNCS(N) \
  180. void copy_and_scalePID_i_E##N() { copy_and_scalePID_i(N); } \
  181. void copy_and_scalePID_d_E##N() { copy_and_scalePID_d(N); }
  182. #else
  183. #define _DEFINE_PIDTEMP_BASE_FUNCS(N) //
  184. #endif
  185. #if ENABLED(PID_AUTOTUNE_MENU)
  186. #define DEFINE_PIDTEMP_FUNCS(N) \
  187. _DEFINE_PIDTEMP_BASE_FUNCS(N); \
  188. void lcd_autotune_callback_E##N() { _lcd_autotune(N); } //
  189. #else
  190. #define DEFINE_PIDTEMP_FUNCS(N) _DEFINE_PIDTEMP_BASE_FUNCS(N); //
  191. #endif
  192. #if HOTENDS
  193. DEFINE_PIDTEMP_FUNCS(0);
  194. #if HOTENDS > 1 && ENABLED(PID_PARAMS_PER_HOTEND)
  195. DEFINE_PIDTEMP_FUNCS(1);
  196. #if HOTENDS > 2
  197. DEFINE_PIDTEMP_FUNCS(2);
  198. #if HOTENDS > 3
  199. DEFINE_PIDTEMP_FUNCS(3);
  200. #if HOTENDS > 4
  201. DEFINE_PIDTEMP_FUNCS(4);
  202. #if HOTENDS > 5
  203. DEFINE_PIDTEMP_FUNCS(5);
  204. #if HOTENDS > 6
  205. DEFINE_PIDTEMP_FUNCS(6);
  206. #if HOTENDS > 7
  207. DEFINE_PIDTEMP_FUNCS(7);
  208. #endif // HOTENDS > 7
  209. #endif // HOTENDS > 6
  210. #endif // HOTENDS > 5
  211. #endif // HOTENDS > 4
  212. #endif // HOTENDS > 3
  213. #endif // HOTENDS > 2
  214. #endif // HOTENDS > 1 && PID_PARAMS_PER_HOTEND
  215. #endif // HOTENDS
  216. #define SHOW_MENU_ADVANCED_TEMPERATURE ((ENABLED(AUTOTEMP) && HAS_TEMP_HOTEND) || EITHER(PID_AUTOTUNE_MENU, PID_EDIT_MENU))
  217. //
  218. // Advanced Settings > Temperature
  219. //
  220. #if SHOW_MENU_ADVANCED_TEMPERATURE
  221. void menu_advanced_temperature() {
  222. START_MENU();
  223. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  224. //
  225. // Autotemp, Min, Max, Fact
  226. //
  227. #if ENABLED(AUTOTEMP) && HAS_TEMP_HOTEND
  228. EDIT_ITEM(bool, MSG_AUTOTEMP, &planner.autotemp_enabled);
  229. EDIT_ITEM(float3, MSG_MIN, &planner.autotemp_min, 0, float(HEATER_0_MAXTEMP) - 15);
  230. EDIT_ITEM(float3, MSG_MAX, &planner.autotemp_max, 0, float(HEATER_0_MAXTEMP) - 15);
  231. EDIT_ITEM(float52, MSG_FACTOR, &planner.autotemp_factor, 0, 10);
  232. #endif
  233. //
  234. // PID-P, PID-I, PID-D, PID-C, PID Autotune
  235. // PID-P E1, PID-I E1, PID-D E1, PID-C E1, PID Autotune E1
  236. // PID-P E2, PID-I E2, PID-D E2, PID-C E2, PID Autotune E2
  237. // PID-P E3, PID-I E3, PID-D E3, PID-C E3, PID Autotune E3
  238. // PID-P E4, PID-I E4, PID-D E4, PID-C E4, PID Autotune E4
  239. // PID-P E5, PID-I E5, PID-D E5, PID-C E5, PID Autotune E5
  240. //
  241. #if ENABLED(PID_EDIT_MENU)
  242. #define __PID_BASE_MENU_ITEMS(N) \
  243. raw_Ki = unscalePID_i(PID_PARAM(Ki, N)); \
  244. raw_Kd = unscalePID_d(PID_PARAM(Kd, N)); \
  245. EDIT_ITEM_N(float52sign, N, MSG_PID_P_E, &PID_PARAM(Kp, N), 1, 9990); \
  246. EDIT_ITEM_N(float52sign, N, MSG_PID_I_E, &raw_Ki, 0.01f, 9990, []{ copy_and_scalePID_i(N); }); \
  247. EDIT_ITEM_N(float52sign, N, MSG_PID_D_E, &raw_Kd, 1, 9990, []{ copy_and_scalePID_d(N); })
  248. #if ENABLED(PID_EXTRUSION_SCALING)
  249. #define _PID_BASE_MENU_ITEMS(N) \
  250. __PID_BASE_MENU_ITEMS(N); \
  251. EDIT_ITEM_N(float3, N, MSG_PID_C_E, &PID_PARAM(Kc, N), 1, 9990)
  252. #else
  253. #define _PID_BASE_MENU_ITEMS(N) __PID_BASE_MENU_ITEMS(N)
  254. #endif
  255. #if ENABLED(PID_FAN_SCALING)
  256. #define _PID_EDIT_MENU_ITEMS(N) \
  257. _PID_BASE_MENU_ITEMS(N); \
  258. EDIT_ITEM(float3, PID_LABEL(MSG_PID_F,N), &PID_PARAM(Kf, N), 1, 9990)
  259. #else
  260. #define _PID_EDIT_MENU_ITEMS(N) _PID_BASE_MENU_ITEMS(N)
  261. #endif
  262. #else
  263. #define _PID_EDIT_MENU_ITEMS(N) NOOP
  264. #endif
  265. #if ENABLED(PID_AUTOTUNE_MENU)
  266. #define PID_EDIT_MENU_ITEMS(N) \
  267. _PID_EDIT_MENU_ITEMS(N); \
  268. EDIT_ITEM_FAST_N(int3, N, MSG_PID_AUTOTUNE_E, &autotune_temp[N], 150, heater_maxtemp[N] - 15, []{ _lcd_autotune(MenuItemBase::itemIndex); })
  269. #else
  270. #define PID_EDIT_MENU_ITEMS(N) _PID_EDIT_MENU_ITEMS(N)
  271. #endif
  272. PID_EDIT_MENU_ITEMS(0);
  273. #if HOTENDS > 1 && ENABLED(PID_PARAMS_PER_HOTEND)
  274. PID_EDIT_MENU_ITEMS(1);
  275. #if HOTENDS > 2
  276. PID_EDIT_MENU_ITEMS(2);
  277. #if HOTENDS > 3
  278. PID_EDIT_MENU_ITEMS(3);
  279. #if HOTENDS > 4
  280. PID_EDIT_MENU_ITEMS(4);
  281. #if HOTENDS > 5
  282. PID_EDIT_MENU_ITEMS(5);
  283. #if HOTENDS > 6
  284. PID_EDIT_MENU_ITEMS(6);
  285. #if HOTENDS > 7
  286. PID_EDIT_MENU_ITEMS(7);
  287. #endif // HOTENDS > 7
  288. #endif // HOTENDS > 6
  289. #endif // HOTENDS > 5
  290. #endif // HOTENDS > 4
  291. #endif // HOTENDS > 3
  292. #endif // HOTENDS > 2
  293. #endif // HOTENDS > 1 && PID_PARAMS_PER_HOTEND
  294. END_MENU();
  295. }
  296. #endif // SHOW_MENU_ADVANCED_TEMPERATURE
  297. #if DISABLED(SLIM_LCD_MENUS)
  298. #if ENABLED(DISTINCT_E_FACTORS)
  299. inline void _reset_e_acceleration_rate(const uint8_t e) { if (e == active_extruder) planner.reset_acceleration_rates(); }
  300. inline void _planner_refresh_e_positioning(const uint8_t e) {
  301. if (e == active_extruder)
  302. planner.refresh_positioning();
  303. else
  304. planner.steps_to_mm[E_AXIS_N(e)] = 1.0f / planner.settings.axis_steps_per_mm[E_AXIS_N(e)];
  305. }
  306. #endif
  307. // M203 / M205 Velocity options
  308. void menu_advanced_velocity() {
  309. START_MENU();
  310. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  311. // M203 Max Feedrate
  312. constexpr xyze_feedrate_t max_fr_edit =
  313. #ifdef MAX_FEEDRATE_EDIT_VALUES
  314. MAX_FEEDRATE_EDIT_VALUES
  315. #elif ENABLED(LIMITED_MAX_FR_EDITING)
  316. DEFAULT_MAX_FEEDRATE
  317. #else
  318. { 999, 999, 999, 999 }
  319. #endif
  320. ;
  321. #if ENABLED(LIMITED_MAX_FR_EDITING) && !defined(MAX_FEEDRATE_EDIT_VALUES)
  322. const xyze_feedrate_t max_fr_edit_scaled = max_fr_edit * 2;
  323. #else
  324. const xyze_feedrate_t &max_fr_edit_scaled = max_fr_edit;
  325. #endif
  326. #define EDIT_VMAX(N) EDIT_ITEM_FAST(float3, MSG_VMAX_##N, &planner.settings.max_feedrate_mm_s[_AXIS(N)], 1, max_fr_edit_scaled[_AXIS(N)])
  327. EDIT_VMAX(A);
  328. EDIT_VMAX(B);
  329. EDIT_VMAX(C);
  330. #if E_STEPPERS
  331. EDIT_ITEM_FAST(float3, MSG_VMAX_E, &planner.settings.max_feedrate_mm_s[E_AXIS_N(active_extruder)], 1, max_fr_edit_scaled.e);
  332. #endif
  333. #if ENABLED(DISTINCT_E_FACTORS)
  334. for (uint8_t n = 0; n < E_STEPPERS; n++)
  335. EDIT_ITEM_FAST_N(float3, n, MSG_VMAX_EN, &planner.settings.max_feedrate_mm_s[E_AXIS_N(n)], 1, max_fr_edit_scaled.e);
  336. #endif
  337. // M205 S Min Feedrate
  338. EDIT_ITEM_FAST(float3, MSG_VMIN, &planner.settings.min_feedrate_mm_s, 0, 999);
  339. // M205 T Min Travel Feedrate
  340. EDIT_ITEM_FAST(float3, MSG_VTRAV_MIN, &planner.settings.min_travel_feedrate_mm_s, 0, 999);
  341. END_MENU();
  342. }
  343. // M201 / M204 Accelerations
  344. void menu_advanced_acceleration() {
  345. START_MENU();
  346. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  347. static float max_accel = _MAX(planner.settings.max_acceleration_mm_per_s2[A_AXIS], planner.settings.max_acceleration_mm_per_s2[B_AXIS], planner.settings.max_acceleration_mm_per_s2[C_AXIS]);
  348. // M204 P Acceleration
  349. EDIT_ITEM_FAST(float5_25, MSG_ACC, &planner.settings.acceleration, 25, max_accel);
  350. // M204 R Retract Acceleration
  351. EDIT_ITEM_FAST(float5, MSG_A_RETRACT, &planner.settings.retract_acceleration, 100, max_accel);
  352. // M204 T Travel Acceleration
  353. EDIT_ITEM_FAST(float5_25, MSG_A_TRAVEL, &planner.settings.travel_acceleration, 25, max_accel);
  354. // M201 settings
  355. constexpr xyze_ulong_t max_accel_edit =
  356. #ifdef MAX_ACCEL_EDIT_VALUES
  357. MAX_ACCEL_EDIT_VALUES
  358. #elif ENABLED(LIMITED_MAX_ACCEL_EDITING)
  359. DEFAULT_MAX_ACCELERATION
  360. #else
  361. { 99000, 99000, 99000, 99000 }
  362. #endif
  363. ;
  364. #if ENABLED(LIMITED_MAX_ACCEL_EDITING) && !defined(MAX_ACCEL_EDIT_VALUES)
  365. const xyze_ulong_t max_accel_edit_scaled = max_accel_edit * 2;
  366. #else
  367. const xyze_ulong_t &max_accel_edit_scaled = max_accel_edit;
  368. #endif
  369. #define EDIT_AMAX(Q,L) EDIT_ITEM_FAST(long5_25, MSG_AMAX_##Q, &planner.settings.max_acceleration_mm_per_s2[_AXIS(Q)], L, max_accel_edit_scaled[_AXIS(Q)], []{ planner.reset_acceleration_rates(); })
  370. EDIT_AMAX(A,100);
  371. EDIT_AMAX(B,100);
  372. EDIT_AMAX(C, 10);
  373. #if ENABLED(DISTINCT_E_FACTORS)
  374. EDIT_ITEM_FAST(long5_25, MSG_AMAX_E, &planner.settings.max_acceleration_mm_per_s2[E_AXIS_N(active_extruder)], 100, max_accel_edit_scaled.e, []{ planner.reset_acceleration_rates(); });
  375. for (uint8_t n = 0; n < E_STEPPERS; n++)
  376. EDIT_ITEM_FAST_N(long5_25, n, MSG_AMAX_EN, &planner.settings.max_acceleration_mm_per_s2[E_AXIS_N(n)], 100, max_accel_edit_scaled.e, []{ _reset_e_acceleration_rate(MenuItemBase::itemIndex); });
  377. #elif E_STEPPERS
  378. EDIT_ITEM_FAST(long5_25, MSG_AMAX_E, &planner.settings.max_acceleration_mm_per_s2[E_AXIS], 100, max_accel_edit_scaled.e, []{ planner.reset_acceleration_rates(); });
  379. #endif
  380. END_MENU();
  381. }
  382. // M205 Jerk
  383. void menu_advanced_jerk() {
  384. START_MENU();
  385. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  386. #if DISABLED(CLASSIC_JERK)
  387. #if ENABLED(LIN_ADVANCE)
  388. EDIT_ITEM(float43, MSG_JUNCTION_DEVIATION, &planner.junction_deviation_mm, 0.001f, 0.3f, planner.recalculate_max_e_jerk);
  389. #else
  390. EDIT_ITEM(float43, MSG_JUNCTION_DEVIATION, &planner.junction_deviation_mm, 0.001f, 0.5f);
  391. #endif
  392. #endif
  393. #if HAS_CLASSIC_JERK
  394. constexpr xyze_float_t max_jerk_edit =
  395. #ifdef MAX_ACCEL_EDIT_VALUES
  396. MAX_JERK_EDIT_VALUES
  397. #elif ENABLED(LIMITED_JERK_EDITING)
  398. { (DEFAULT_XJERK) * 2, (DEFAULT_YJERK) * 2, (DEFAULT_ZJERK) * 2, (DEFAULT_EJERK) * 2 }
  399. #else
  400. { 990, 990, 990, 990 }
  401. #endif
  402. ;
  403. #define EDIT_JERK(N) EDIT_ITEM_FAST(float3, MSG_V##N##_JERK, &planner.max_jerk[_AXIS(N)], 1, max_jerk_edit[_AXIS(N)])
  404. EDIT_JERK(A);
  405. EDIT_JERK(B);
  406. #if ENABLED(DELTA)
  407. EDIT_JERK(C);
  408. #else
  409. EDIT_ITEM_FAST(float52sign, MSG_VC_JERK, &planner.max_jerk.c, 0.1f, max_jerk_edit.c);
  410. #endif
  411. #if HAS_CLASSIC_E_JERK
  412. EDIT_ITEM_FAST(float52sign, MSG_VE_JERK, &planner.max_jerk.e, 0.1f, max_jerk_edit.e);
  413. #endif
  414. #endif
  415. END_MENU();
  416. }
  417. // M851 - Z Probe Offsets
  418. #if HAS_BED_PROBE
  419. void menu_probe_offsets() {
  420. START_MENU();
  421. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  422. EDIT_ITEM(float51sign, MSG_ZPROBE_XOFFSET, &probe_offset.x, -(X_BED_SIZE), X_BED_SIZE);
  423. EDIT_ITEM(float51sign, MSG_ZPROBE_YOFFSET, &probe_offset.y, -(Y_BED_SIZE), Y_BED_SIZE);
  424. EDIT_ITEM(LCD_Z_OFFSET_TYPE, MSG_ZPROBE_ZOFFSET, &probe_offset.z, Z_PROBE_OFFSET_RANGE_MIN, Z_PROBE_OFFSET_RANGE_MAX);
  425. END_MENU();
  426. }
  427. #endif
  428. #endif // !SLIM_LCD_MENUS
  429. // M92 Steps-per-mm
  430. void menu_advanced_steps_per_mm() {
  431. START_MENU();
  432. BACK_ITEM(MSG_ADVANCED_SETTINGS);
  433. #define EDIT_QSTEPS(Q) EDIT_ITEM_FAST(float51, MSG_##Q##_STEPS, &planner.settings.axis_steps_per_mm[_AXIS(Q)], 5, 9999, []{ planner.refresh_positioning(); })
  434. EDIT_QSTEPS(A);
  435. EDIT_QSTEPS(B);
  436. EDIT_QSTEPS(C);
  437. #if ENABLED(DISTINCT_E_FACTORS)
  438. EDIT_ITEM_FAST(float51, MSG_E_STEPS, &planner.settings.axis_steps_per_mm[E_AXIS_N(active_extruder)], 5, 9999, []{ planner.refresh_positioning(); });
  439. for (uint8_t n = 0; n < E_STEPPERS; n++)
  440. EDIT_ITEM_FAST_N(float51, n, MSG_EN_STEPS, &planner.settings.axis_steps_per_mm[E_AXIS_N(n)], 5, 9999, []{ _planner_refresh_e_positioning(MenuItemBase::itemIndex); });
  441. #elif E_STEPPERS
  442. EDIT_ITEM_FAST(float51, MSG_E_STEPS, &planner.settings.axis_steps_per_mm[E_AXIS], 5, 9999, []{ planner.refresh_positioning(); });
  443. #endif
  444. END_MENU();
  445. }
  446. void menu_advanced_settings() {
  447. #if ENABLED(FILAMENT_RUNOUT_SENSOR) && FILAMENT_RUNOUT_DISTANCE_MM
  448. lcd_runout_distance_mm = runout.runout_distance();
  449. #endif
  450. START_MENU();
  451. BACK_ITEM(MSG_CONFIGURATION);
  452. #if DISABLED(SLIM_LCD_MENUS)
  453. #if HAS_M206_COMMAND
  454. //
  455. // Set Home Offsets
  456. //
  457. ACTION_ITEM(MSG_SET_HOME_OFFSETS, []{ queue.inject_P(PSTR("M428")); ui.return_to_status(); });
  458. #endif
  459. // M203 / M205 - Feedrate items
  460. SUBMENU(MSG_VELOCITY, menu_advanced_velocity);
  461. // M201 - Acceleration items
  462. SUBMENU(MSG_ACCELERATION, menu_advanced_acceleration);
  463. // M205 - Max Jerk
  464. SUBMENU(MSG_JERK, menu_advanced_jerk);
  465. // M851 - Z Probe Offsets
  466. #if HAS_BED_PROBE
  467. if (!printer_busy())
  468. SUBMENU(MSG_ZPROBE_OFFSETS, menu_probe_offsets);
  469. #endif
  470. #endif // !SLIM_LCD_MENUS
  471. // M92 - Steps Per mm
  472. if (!printer_busy())
  473. SUBMENU(MSG_STEPS_PER_MM, menu_advanced_steps_per_mm);
  474. #if ENABLED(BACKLASH_GCODE)
  475. SUBMENU(MSG_BACKLASH, menu_backlash);
  476. #endif
  477. #if ENABLED(CANCEL_OBJECTS)
  478. SUBMENU(MSG_CANCEL_OBJECT, []{ editable.int8 = -1; ui.goto_screen(menu_cancelobject); });
  479. #endif
  480. #if ENABLED(DAC_STEPPER_CURRENT)
  481. SUBMENU(MSG_DRIVE_STRENGTH, menu_dac);
  482. #endif
  483. #if HAS_MOTOR_CURRENT_PWM
  484. SUBMENU(MSG_DRIVE_STRENGTH, menu_pwm);
  485. #endif
  486. #if HAS_TRINAMIC
  487. SUBMENU(MSG_TMC_DRIVERS, menu_tmc);
  488. #endif
  489. #if SHOW_MENU_ADVANCED_TEMPERATURE
  490. SUBMENU(MSG_TEMPERATURE, menu_advanced_temperature);
  491. #endif
  492. #if DISABLED(NO_VOLUMETRICS) || ENABLED(ADVANCED_PAUSE_FEATURE)
  493. SUBMENU(MSG_FILAMENT, menu_advanced_filament);
  494. #elif ENABLED(LIN_ADVANCE)
  495. #if EXTRUDERS == 1
  496. EDIT_ITEM(float52, MSG_ADVANCE_K, &planner.extruder_advance_K[0], 0, 999);
  497. #elif EXTRUDERS > 1
  498. for (uint8_t n = 0; n < E_STEPPERS; n++)
  499. EDIT_ITEM_N(float52, n, MSG_ADVANCE_K_E, &planner.extruder_advance_K[n], 0, 999);
  500. #endif
  501. #endif
  502. // M540 S - Abort on endstop hit when SD printing
  503. #if ENABLED(SD_ABORT_ON_ENDSTOP_HIT)
  504. EDIT_ITEM(bool, MSG_ENDSTOP_ABORT, &planner.abort_on_endstop_hit);
  505. #endif
  506. #if ENABLED(SD_FIRMWARE_UPDATE)
  507. bool sd_update_state = settings.sd_update_status();
  508. EDIT_ITEM(bool, MSG_MEDIA_UPDATE, &sd_update_state, []{
  509. //
  510. // Toggle the SD Firmware Update state in EEPROM
  511. //
  512. const bool new_state = !settings.sd_update_status(),
  513. didset = settings.set_sd_update_status(new_state);
  514. #if HAS_BUZZER
  515. ui.completion_feedback(didset);
  516. #endif
  517. ui.return_to_status();
  518. if (new_state) LCD_MESSAGEPGM(MSG_RESET_PRINTER); else ui.reset_status();
  519. });
  520. #endif
  521. #if ENABLED(EEPROM_SETTINGS) && DISABLED(SLIM_LCD_MENUS)
  522. CONFIRM_ITEM(MSG_INIT_EEPROM,
  523. MSG_BUTTON_INIT, MSG_BUTTON_CANCEL,
  524. []{
  525. const bool inited = settings.init_eeprom();
  526. #if HAS_BUZZER
  527. ui.completion_feedback(inited);
  528. #endif
  529. UNUSED(inited);
  530. },
  531. ui.goto_previous_screen,
  532. GET_TEXT(MSG_INIT_EEPROM), (PGM_P)nullptr, PSTR("?")
  533. );
  534. #endif
  535. END_MENU();
  536. }
  537. #endif // HAS_LCD_MENU