My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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tmc_util.h 14KB

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  1. /**
  2. * Marlin 3D Printer Firmware
  3. * Copyright (c) 2020 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. #pragma once
  23. #include "../inc/MarlinConfig.h"
  24. #include "../lcd/ultralcd.h"
  25. #if HAS_TRINAMIC
  26. #include <TMCStepper.h>
  27. #include "../module/planner.h"
  28. #define CHOPPER_DEFAULT_12V { 3, -1, 1 }
  29. #define CHOPPER_DEFAULT_19V { 4, 1, 1 }
  30. #define CHOPPER_DEFAULT_24V { 4, 2, 1 }
  31. #define CHOPPER_DEFAULT_36V { 5, 2, 4 }
  32. #define CHOPPER_PRUSAMK3_24V { 3, -2, 6 }
  33. #define CHOPPER_MARLIN_119 { 5, 2, 3 }
  34. #if ENABLED(MONITOR_DRIVER_STATUS) && !defined(MONITOR_DRIVER_STATUS_INTERVAL_MS)
  35. #define MONITOR_DRIVER_STATUS_INTERVAL_MS 500u
  36. #endif
  37. constexpr uint16_t _tmc_thrs(const uint16_t msteps, const uint32_t thrs, const uint32_t spmm) {
  38. return 12650000UL * msteps / (256 * thrs * spmm);
  39. }
  40. template<char AXIS_LETTER, char DRIVER_ID>
  41. class TMCStorage {
  42. protected:
  43. // Only a child class has access to constructor => Don't create on its own! "Poor man's abstract class"
  44. TMCStorage() {}
  45. public:
  46. uint16_t val_mA = 0;
  47. #if ENABLED(MONITOR_DRIVER_STATUS)
  48. uint8_t otpw_count = 0,
  49. error_count = 0;
  50. bool flag_otpw = false;
  51. inline bool getOTPW() { return flag_otpw; }
  52. inline void clear_otpw() { flag_otpw = 0; }
  53. #endif
  54. inline uint16_t getMilliamps() { return val_mA; }
  55. inline void printLabel() {
  56. SERIAL_CHAR(AXIS_LETTER);
  57. if (DRIVER_ID > '0') SERIAL_CHAR(DRIVER_ID);
  58. }
  59. struct {
  60. #if HAS_STEALTHCHOP
  61. bool stealthChop_enabled = false;
  62. #endif
  63. #if ENABLED(HYBRID_THRESHOLD)
  64. uint8_t hybrid_thrs = 0;
  65. #endif
  66. #if USE_SENSORLESS
  67. int16_t homing_thrs = 0;
  68. #endif
  69. } stored;
  70. };
  71. template<class TMC, char AXIS_LETTER, char DRIVER_ID, AxisEnum AXIS_ID>
  72. class TMCMarlin : public TMC, public TMCStorage<AXIS_LETTER, DRIVER_ID> {
  73. public:
  74. TMCMarlin(const uint16_t cs_pin, const float RS) :
  75. TMC(cs_pin, RS)
  76. {}
  77. TMCMarlin(const uint16_t cs_pin, const float RS, const uint8_t axis_chain_index) :
  78. TMC(cs_pin, RS, axis_chain_index)
  79. {}
  80. TMCMarlin(const uint16_t CS, const float RS, const uint16_t pinMOSI, const uint16_t pinMISO, const uint16_t pinSCK) :
  81. TMC(CS, RS, pinMOSI, pinMISO, pinSCK)
  82. {}
  83. TMCMarlin(const uint16_t CS, const float RS, const uint16_t pinMOSI, const uint16_t pinMISO, const uint16_t pinSCK, const uint8_t axis_chain_index) :
  84. TMC(CS, RS, pinMOSI, pinMISO, pinSCK, axis_chain_index)
  85. {}
  86. inline uint16_t rms_current() { return TMC::rms_current(); }
  87. inline void rms_current(uint16_t mA) {
  88. this->val_mA = mA;
  89. TMC::rms_current(mA);
  90. }
  91. inline void rms_current(const uint16_t mA, const float mult) {
  92. this->val_mA = mA;
  93. TMC::rms_current(mA, mult);
  94. }
  95. #if HAS_STEALTHCHOP
  96. inline void refresh_stepping_mode() { this->en_pwm_mode(this->stored.stealthChop_enabled); }
  97. inline bool get_stealthChop_status() { return this->en_pwm_mode(); }
  98. #endif
  99. #if ENABLED(HYBRID_THRESHOLD)
  100. uint32_t get_pwm_thrs() {
  101. return _tmc_thrs(this->microsteps(), this->TPWMTHRS(), planner.settings.axis_steps_per_mm[AXIS_ID]);
  102. }
  103. void set_pwm_thrs(const uint32_t thrs) {
  104. TMC::TPWMTHRS(_tmc_thrs(this->microsteps(), thrs, planner.settings.axis_steps_per_mm[AXIS_ID]));
  105. #if HAS_LCD_MENU
  106. this->stored.hybrid_thrs = thrs;
  107. #endif
  108. }
  109. #endif
  110. #if USE_SENSORLESS
  111. inline int16_t homing_threshold() { return TMC::sgt(); }
  112. void homing_threshold(int16_t sgt_val) {
  113. sgt_val = (int16_t)constrain(sgt_val, sgt_min, sgt_max);
  114. TMC::sgt(sgt_val);
  115. #if HAS_LCD_MENU
  116. this->stored.homing_thrs = sgt_val;
  117. #endif
  118. }
  119. #if ENABLED(SPI_ENDSTOPS)
  120. bool test_stall_status();
  121. #endif
  122. #endif
  123. uint32_t get_cool_thrs() {
  124. return _tmc_thrs(this->microsteps(), this->TCOOLTHRS(), planner.settings.axis_steps_per_mm[AXIS_ID]);
  125. }
  126. void set_cool_thrs(const uint32_t thrs) {
  127. TMC::TCOOLTHRS(_tmc_thrs(this->microsteps(), thrs, planner.settings.axis_steps_per_mm[AXIS_ID]));
  128. }
  129. #if HAS_LCD_MENU
  130. inline void refresh_stepper_current() { rms_current(this->val_mA); }
  131. #if ENABLED(HYBRID_THRESHOLD)
  132. inline void refresh_hybrid_thrs() { set_pwm_thrs(this->stored.hybrid_thrs); }
  133. #endif
  134. #if USE_SENSORLESS
  135. inline void refresh_homing_thrs() { homing_threshold(this->stored.homing_thrs); }
  136. #endif
  137. #endif
  138. static constexpr int8_t sgt_min = -64,
  139. sgt_max = 63;
  140. };
  141. template<char AXIS_LETTER, char DRIVER_ID, AxisEnum AXIS_ID>
  142. class TMCMarlin<TMC2208Stepper, AXIS_LETTER, DRIVER_ID, AXIS_ID> : public TMC2208Stepper, public TMCStorage<AXIS_LETTER, DRIVER_ID> {
  143. public:
  144. TMCMarlin(Stream * SerialPort, const float RS, const uint8_t) :
  145. TMC2208Stepper(SerialPort, RS)
  146. {}
  147. TMCMarlin(const uint16_t RX, const uint16_t TX, const float RS, const uint8_t, const bool has_rx=true) :
  148. TMC2208Stepper(RX, TX, RS, has_rx)
  149. {}
  150. uint16_t rms_current() { return TMC2208Stepper::rms_current(); }
  151. inline void rms_current(const uint16_t mA) {
  152. this->val_mA = mA;
  153. TMC2208Stepper::rms_current(mA);
  154. }
  155. inline void rms_current(const uint16_t mA, const float mult) {
  156. this->val_mA = mA;
  157. TMC2208Stepper::rms_current(mA, mult);
  158. }
  159. #if HAS_STEALTHCHOP
  160. inline void refresh_stepping_mode() { en_spreadCycle(!this->stored.stealthChop_enabled); }
  161. inline bool get_stealthChop_status() { return !this->en_spreadCycle(); }
  162. #endif
  163. #if ENABLED(HYBRID_THRESHOLD)
  164. uint32_t get_pwm_thrs() {
  165. return _tmc_thrs(this->microsteps(), this->TPWMTHRS(), planner.settings.axis_steps_per_mm[AXIS_ID]);
  166. }
  167. void set_pwm_thrs(const uint32_t thrs) {
  168. TMC2208Stepper::TPWMTHRS(_tmc_thrs(this->microsteps(), thrs, planner.settings.axis_steps_per_mm[AXIS_ID]));
  169. #if HAS_LCD_MENU
  170. this->stored.hybrid_thrs = thrs;
  171. #endif
  172. }
  173. #endif
  174. #if HAS_LCD_MENU
  175. inline void refresh_stepper_current() { rms_current(this->val_mA); }
  176. #if ENABLED(HYBRID_THRESHOLD)
  177. inline void refresh_hybrid_thrs() { set_pwm_thrs(this->stored.hybrid_thrs); }
  178. #endif
  179. #endif
  180. };
  181. template<char AXIS_LETTER, char DRIVER_ID, AxisEnum AXIS_ID>
  182. class TMCMarlin<TMC2209Stepper, AXIS_LETTER, DRIVER_ID, AXIS_ID> : public TMC2209Stepper, public TMCStorage<AXIS_LETTER, DRIVER_ID> {
  183. public:
  184. TMCMarlin(Stream * SerialPort, const float RS, const uint8_t addr) :
  185. TMC2209Stepper(SerialPort, RS, addr)
  186. {}
  187. TMCMarlin(const uint16_t RX, const uint16_t TX, const float RS, const uint8_t addr, const bool) :
  188. TMC2209Stepper(RX, TX, RS, addr)
  189. {}
  190. uint8_t get_address() { return slave_address; }
  191. uint16_t rms_current() { return TMC2209Stepper::rms_current(); }
  192. inline void rms_current(const uint16_t mA) {
  193. this->val_mA = mA;
  194. TMC2209Stepper::rms_current(mA);
  195. }
  196. inline void rms_current(const uint16_t mA, const float mult) {
  197. this->val_mA = mA;
  198. TMC2209Stepper::rms_current(mA, mult);
  199. }
  200. #if HAS_STEALTHCHOP
  201. inline void refresh_stepping_mode() { en_spreadCycle(!this->stored.stealthChop_enabled); }
  202. inline bool get_stealthChop_status() { return !this->en_spreadCycle(); }
  203. #endif
  204. #if ENABLED(HYBRID_THRESHOLD)
  205. uint32_t get_pwm_thrs() {
  206. return _tmc_thrs(this->microsteps(), this->TPWMTHRS(), planner.settings.axis_steps_per_mm[AXIS_ID]);
  207. }
  208. void set_pwm_thrs(const uint32_t thrs) {
  209. TMC2209Stepper::TPWMTHRS(_tmc_thrs(this->microsteps(), thrs, planner.settings.axis_steps_per_mm[AXIS_ID]));
  210. #if HAS_LCD_MENU
  211. this->stored.hybrid_thrs = thrs;
  212. #endif
  213. }
  214. #endif
  215. uint32_t get_cool_thrs() {
  216. return _tmc_thrs(this->microsteps(), this->TCOOLTHRS(), planner.settings.axis_steps_per_mm[AXIS_ID]);
  217. }
  218. void set_cool_thrs(const uint32_t thrs) {
  219. TMC2209Stepper::TCOOLTHRS(_tmc_thrs(this->microsteps(), thrs, planner.settings.axis_steps_per_mm[AXIS_ID]));
  220. }
  221. #if USE_SENSORLESS
  222. inline int16_t homing_threshold() { return TMC2209Stepper::SGTHRS(); }
  223. void homing_threshold(int16_t sgt_val) {
  224. sgt_val = (int16_t)constrain(sgt_val, sgt_min, sgt_max);
  225. TMC2209Stepper::SGTHRS(sgt_val);
  226. #if HAS_LCD_MENU
  227. this->stored.homing_thrs = sgt_val;
  228. #endif
  229. }
  230. #endif
  231. #if HAS_LCD_MENU
  232. inline void refresh_stepper_current() { rms_current(this->val_mA); }
  233. #if ENABLED(HYBRID_THRESHOLD)
  234. inline void refresh_hybrid_thrs() { set_pwm_thrs(this->stored.hybrid_thrs); }
  235. #endif
  236. #if USE_SENSORLESS
  237. inline void refresh_homing_thrs() { homing_threshold(this->stored.homing_thrs); }
  238. #endif
  239. #endif
  240. static constexpr uint8_t sgt_min = 0,
  241. sgt_max = 255;
  242. };
  243. template<char AXIS_LETTER, char DRIVER_ID, AxisEnum AXIS_ID>
  244. class TMCMarlin<TMC2660Stepper, AXIS_LETTER, DRIVER_ID, AXIS_ID> : public TMC2660Stepper, public TMCStorage<AXIS_LETTER, DRIVER_ID> {
  245. public:
  246. TMCMarlin(const uint16_t cs_pin, const float RS, const uint8_t) :
  247. TMC2660Stepper(cs_pin, RS)
  248. {}
  249. TMCMarlin(const uint16_t CS, const float RS, const uint16_t pinMOSI, const uint16_t pinMISO, const uint16_t pinSCK, const uint8_t) :
  250. TMC2660Stepper(CS, RS, pinMOSI, pinMISO, pinSCK)
  251. {}
  252. inline uint16_t rms_current() { return TMC2660Stepper::rms_current(); }
  253. inline void rms_current(const uint16_t mA) {
  254. this->val_mA = mA;
  255. TMC2660Stepper::rms_current(mA);
  256. }
  257. #if USE_SENSORLESS
  258. inline int16_t homing_threshold() { return TMC2660Stepper::sgt(); }
  259. void homing_threshold(int16_t sgt_val) {
  260. sgt_val = (int16_t)constrain(sgt_val, sgt_min, sgt_max);
  261. TMC2660Stepper::sgt(sgt_val);
  262. #if HAS_LCD_MENU
  263. this->stored.homing_thrs = sgt_val;
  264. #endif
  265. }
  266. #endif
  267. #if HAS_LCD_MENU
  268. inline void refresh_stepper_current() { rms_current(this->val_mA); }
  269. #if USE_SENSORLESS
  270. inline void refresh_homing_thrs() { homing_threshold(this->stored.homing_thrs); }
  271. #endif
  272. #endif
  273. static constexpr int8_t sgt_min = -64,
  274. sgt_max = 63;
  275. };
  276. template<typename TMC>
  277. void tmc_print_current(TMC &st) {
  278. st.printLabel();
  279. SERIAL_ECHOLNPAIR(" driver current: ", st.getMilliamps());
  280. }
  281. #if ENABLED(MONITOR_DRIVER_STATUS)
  282. template<typename TMC>
  283. void tmc_report_otpw(TMC &st) {
  284. st.printLabel();
  285. SERIAL_ECHOPGM(" temperature prewarn triggered: ");
  286. serialprint_truefalse(st.getOTPW());
  287. SERIAL_EOL();
  288. }
  289. template<typename TMC>
  290. void tmc_clear_otpw(TMC &st) {
  291. st.clear_otpw();
  292. st.printLabel();
  293. SERIAL_ECHOLNPGM(" prewarn flag cleared");
  294. }
  295. #endif
  296. #if ENABLED(HYBRID_THRESHOLD)
  297. template<typename TMC>
  298. void tmc_print_pwmthrs(TMC &st) {
  299. st.printLabel();
  300. SERIAL_ECHOLNPAIR(" stealthChop max speed: ", st.get_pwm_thrs());
  301. }
  302. #endif
  303. #if USE_SENSORLESS
  304. template<typename TMC>
  305. void tmc_print_sgt(TMC &st) {
  306. st.printLabel();
  307. SERIAL_ECHOPGM(" homing sensitivity: ");
  308. SERIAL_PRINTLN(st.homing_threshold(), DEC);
  309. }
  310. #endif
  311. void monitor_tmc_drivers();
  312. void test_tmc_connection(const bool test_x, const bool test_y, const bool test_z, const bool test_e);
  313. #if ENABLED(TMC_DEBUG)
  314. #if ENABLED(MONITOR_DRIVER_STATUS)
  315. void tmc_set_report_interval(const uint16_t update_interval);
  316. #endif
  317. void tmc_report_all(const bool print_x, const bool print_y, const bool print_z, const bool print_e);
  318. void tmc_get_registers(const bool print_x, const bool print_y, const bool print_z, const bool print_e);
  319. #endif
  320. /**
  321. * TMC2130-specific sensorless homing using stallGuard2.
  322. * stallGuard2 only works when in spreadCycle mode.
  323. * spreadCycle and stealthChop are mutually-exclusive.
  324. *
  325. * Defined here because of limitations with templates and headers.
  326. */
  327. #if USE_SENSORLESS
  328. // Track enabled status of stealthChop and only re-enable where applicable
  329. struct sensorless_t { bool x, y, z, x2, y2, z2, z3, z4; };
  330. #if ENABLED(IMPROVE_HOMING_RELIABILITY)
  331. extern millis_t sg_guard_period;
  332. constexpr uint16_t default_sg_guard_duration = 400;
  333. struct slow_homing_t {
  334. xy_ulong_t acceleration;
  335. #if HAS_CLASSIC_JERK
  336. xy_float_t jerk_xy;
  337. #endif
  338. };
  339. #endif
  340. bool tmc_enable_stallguard(TMC2130Stepper &st);
  341. void tmc_disable_stallguard(TMC2130Stepper &st, const bool restore_stealth);
  342. bool tmc_enable_stallguard(TMC2209Stepper &st);
  343. void tmc_disable_stallguard(TMC2209Stepper &st, const bool restore_stealth);
  344. bool tmc_enable_stallguard(TMC2660Stepper);
  345. void tmc_disable_stallguard(TMC2660Stepper, const bool);
  346. #if ENABLED(SPI_ENDSTOPS)
  347. template<class TMC, char AXIS_LETTER, char DRIVER_ID, AxisEnum AXIS_ID>
  348. bool TMCMarlin<TMC, AXIS_LETTER, DRIVER_ID, AXIS_ID>::test_stall_status() {
  349. this->switchCSpin(LOW);
  350. // read stallGuard flag from TMC library, will handle HW and SW SPI
  351. TMC2130_n::DRV_STATUS_t drv_status{0};
  352. drv_status.sr = this->DRV_STATUS();
  353. this->switchCSpin(HIGH);
  354. return drv_status.stallGuard;
  355. }
  356. #endif // SPI_ENDSTOPS
  357. #endif // USE_SENSORLESS
  358. #if HAS_TMC_SPI
  359. void tmc_init_cs_pins();
  360. #endif
  361. #endif // HAS_TRINAMIC