My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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pinsDebug.h 10KB

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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 <https://www.gnu.org/licenses/>.
  20. *
  21. */
  22. #pragma once
  23. #include <Arduino.h>
  24. #ifndef NUM_DIGITAL_PINS
  25. // Only in ST's Arduino core (STM32duino, STM32Core)
  26. #error "Expected NUM_DIGITAL_PINS not found"
  27. #endif
  28. /**
  29. * Life gets complicated if you want an easy to use 'M43 I' output (in port/pin order)
  30. * because the variants in this platform do not always define all the I/O port/pins
  31. * that a CPU has.
  32. *
  33. * VARIABLES:
  34. * Ard_num - Arduino pin number - defined by the platform. It is used by digitalRead and
  35. * digitalWrite commands and by M42.
  36. * - does not contain port/pin info
  37. * - is not in port/pin order
  38. * - typically a variant will only assign Ard_num to port/pins that are actually used
  39. * Index - M43 counter - only used to get Ard_num
  40. * x - a parameter/argument used to search the pin_array to try to find a signal name
  41. * associated with a Ard_num
  42. * Port_pin - port number and pin number for use with CPU registers and printing reports
  43. *
  44. * Since M43 uses digitalRead and digitalWrite commands, only the Port_pins with an Ard_num
  45. * are accessed and/or displayed.
  46. *
  47. * Three arrays are used.
  48. *
  49. * digitalPin[] is provided by the platform. It consists of the Port_pin numbers in
  50. * Arduino pin number order.
  51. *
  52. * pin_array is a structure generated by the pins/pinsDebug.h header file. It is generated by
  53. * the preprocessor. Only the signals associated with enabled options are in this table.
  54. * It contains:
  55. * - name of the signal
  56. * - the Ard_num assigned by the pins_YOUR_BOARD.h file using the platform defines.
  57. * EXAMPLE: "#define KILL_PIN PB1" results in Ard_num of 57. 57 is then used as the
  58. * argument to digitalPinToPinName(IO) to get the Port_pin number
  59. * - if it is a digital or analog signal. PWMs are considered digital here.
  60. *
  61. * pin_xref is a structure generated by this header file. It is generated by the
  62. * preprocessor. It is in port/pin order. It contains just the port/pin numbers defined by the
  63. * platform for this variant.
  64. * - Ard_num
  65. * - printable version of Port_pin
  66. *
  67. * Routines with an "x" as a parameter/argument are used to search the pin_array to try to
  68. * find a signal name associated with a port/pin.
  69. *
  70. * NOTE - the Arduino pin number is what is used by the M42 command, NOT the port/pin for that
  71. * signal. The Arduino pin number is listed by the M43 I command.
  72. */
  73. ////////////////////////////////////////////////////////
  74. //
  75. // make a list of the Arduino pin numbers in the Port/Pin order
  76. //
  77. #define _PIN_ADD_2(NAME_ALPHA, ARDUINO_NUM) { {NAME_ALPHA}, ARDUINO_NUM },
  78. #define _PIN_ADD(NAME_ALPHA, ARDUINO_NUM) { NAME_ALPHA, ARDUINO_NUM },
  79. #define PIN_ADD(NAME) _PIN_ADD(#NAME, NAME)
  80. typedef struct {
  81. char Port_pin_alpha[5];
  82. pin_t Ard_num;
  83. } XrefInfo;
  84. const XrefInfo pin_xref[] PROGMEM = {
  85. #include "pins_Xref.h"
  86. };
  87. ////////////////////////////////////////////////////////////
  88. #define MODE_PIN_INPUT 0 // Input mode (reset state)
  89. #define MODE_PIN_OUTPUT 1 // General purpose output mode
  90. #define MODE_PIN_ALT 2 // Alternate function mode
  91. #define MODE_PIN_ANALOG 3 // Analog mode
  92. #define PIN_NUM(P) (P & 0x000F)
  93. #define PIN_NUM_ALPHA_LEFT(P) (((P & 0x000F) < 10) ? ('0' + (P & 0x000F)) : '1')
  94. #define PIN_NUM_ALPHA_RIGHT(P) (((P & 0x000F) > 9) ? ('0' + (P & 0x000F) - 10) : 0 )
  95. #define PORT_NUM(P) ((P >> 4) & 0x0007)
  96. #define PORT_ALPHA(P) ('A' + (P >> 4))
  97. /**
  98. * Translation of routines & variables used by pinsDebug.h
  99. */
  100. #define NUMBER_PINS_TOTAL NUM_DIGITAL_PINS
  101. #define VALID_PIN(ANUM) ((ANUM) >= 0 && (ANUM) < NUMBER_PINS_TOTAL)
  102. #define digitalRead_mod(Ard_num) extDigitalRead(Ard_num) // must use Arduino pin numbers when doing reads
  103. #define PRINT_PIN(Q)
  104. #define PRINT_PIN_ANALOG(p) do{ sprintf_P(buffer, PSTR(" (A%2d) "), DIGITAL_PIN_TO_ANALOG_PIN(pin)); SERIAL_ECHO(buffer); }while(0)
  105. #define PRINT_PORT(ANUM) port_print(ANUM)
  106. #define DIGITAL_PIN_TO_ANALOG_PIN(ANUM) -1 // will report analog pin number in the print port routine
  107. // x is a variable used to search pin_array
  108. #define GET_ARRAY_IS_DIGITAL(x) ((bool) pin_array[x].is_digital)
  109. #define GET_ARRAY_PIN(x) ((pin_t) pin_array[x].pin)
  110. #define PRINT_ARRAY_NAME(x) do{ sprintf_P(buffer, PSTR("%-" STRINGIFY(MAX_NAME_LENGTH) "s"), pin_array[x].name); SERIAL_ECHO(buffer); }while(0)
  111. #define MULTI_NAME_PAD 33 // space needed to be pretty if not first name assigned to a pin
  112. //
  113. // Pin Mapping for M43
  114. //
  115. #define GET_PIN_MAP_PIN_M43(Index) pin_xref[Index].Ard_num
  116. #ifndef M43_NEVER_TOUCH
  117. #define _M43_NEVER_TOUCH(Index) (Index >= 9 && Index <= 12) // SERIAL/USB pins: PA9(TX) PA10(RX) PA11(USB_DM) PA12(USB_DP)
  118. #ifdef KILL_PIN
  119. #define M43_NEVER_TOUCH(Index) m43_never_touch(Index)
  120. bool m43_never_touch(const pin_t Index) {
  121. static pin_t M43_kill_index = -1;
  122. if (M43_kill_index < 0)
  123. for (M43_kill_index = 0; M43_kill_index < NUMBER_PINS_TOTAL; M43_kill_index++)
  124. if (KILL_PIN == GET_PIN_MAP_PIN_M43(M43_kill_index)) break;
  125. return _M43_NEVER_TOUCH(Index) || Index == M43_kill_index; // KILL_PIN and SERIAL/USB
  126. }
  127. #else
  128. #define M43_NEVER_TOUCH(Index) _M43_NEVER_TOUCH(Index)
  129. #endif
  130. #endif
  131. uint8_t get_pin_mode(const pin_t Ard_num) {
  132. const PinName dp = digitalPinToPinName(Ard_num);
  133. uint32_t ll_pin = STM_LL_GPIO_PIN(dp);
  134. GPIO_TypeDef *port = get_GPIO_Port(STM_PORT(dp));
  135. uint32_t mode = LL_GPIO_GetPinMode(port, ll_pin);
  136. switch (mode) {
  137. case LL_GPIO_MODE_ANALOG: return MODE_PIN_ANALOG;
  138. case LL_GPIO_MODE_INPUT: return MODE_PIN_INPUT;
  139. case LL_GPIO_MODE_OUTPUT: return MODE_PIN_OUTPUT;
  140. case LL_GPIO_MODE_ALTERNATE: return MODE_PIN_ALT;
  141. TERN_(STM32F1xx, case LL_GPIO_MODE_FLOATING:)
  142. default: return 0;
  143. }
  144. }
  145. bool GET_PINMODE(const pin_t Ard_num) {
  146. const uint8_t pin_mode = get_pin_mode(Ard_num);
  147. return pin_mode == MODE_PIN_OUTPUT || pin_mode == MODE_PIN_ALT; // assume all alt definitions are PWM
  148. }
  149. int8_t digital_pin_to_analog_pin(pin_t Ard_num) {
  150. Ard_num -= NUM_ANALOG_FIRST;
  151. return (Ard_num >= 0 && Ard_num < NUM_ANALOG_INPUTS) ? Ard_num : -1;
  152. }
  153. bool IS_ANALOG(const pin_t Ard_num) {
  154. return get_pin_mode(Ard_num) == MODE_PIN_ANALOG;
  155. }
  156. bool is_digital(const pin_t x) {
  157. const uint8_t pin_mode = get_pin_mode(pin_array[x].pin);
  158. return pin_mode == MODE_PIN_INPUT || pin_mode == MODE_PIN_OUTPUT;
  159. }
  160. void port_print(const pin_t Ard_num) {
  161. char buffer[16];
  162. pin_t Index;
  163. for (Index = 0; Index < NUMBER_PINS_TOTAL; Index++)
  164. if (Ard_num == GET_PIN_MAP_PIN_M43(Index)) break;
  165. const char * ppa = pin_xref[Index].Port_pin_alpha;
  166. sprintf_P(buffer, PSTR("%s"), ppa);
  167. SERIAL_ECHO(buffer);
  168. if (ppa[3] == '\0') SERIAL_CHAR(' ');
  169. // print analog pin number
  170. const int8_t Port_pin = digital_pin_to_analog_pin(Ard_num);
  171. if (Port_pin >= 0) {
  172. sprintf_P(buffer, PSTR(" (A%d) "), Port_pin);
  173. SERIAL_ECHO(buffer);
  174. if (Port_pin < 10) SERIAL_CHAR(' ');
  175. }
  176. else
  177. SERIAL_ECHO_SP(7);
  178. // Print number to be used with M42
  179. sprintf_P(buffer, PSTR(" M42 P%d "), Ard_num);
  180. SERIAL_ECHO(buffer);
  181. if (Ard_num < 10) SERIAL_CHAR(' ');
  182. if (Ard_num < 100) SERIAL_CHAR(' ');
  183. }
  184. bool pwm_status(const pin_t Ard_num) {
  185. return get_pin_mode(Ard_num) == MODE_PIN_ALT;
  186. }
  187. void pwm_details(const pin_t Ard_num) {
  188. #ifndef STM32F1xx
  189. if (pwm_status(Ard_num)) {
  190. uint32_t alt_all = 0;
  191. const PinName dp = digitalPinToPinName(Ard_num);
  192. pin_t pin_number = uint8_t(PIN_NUM(dp));
  193. const bool over_7 = pin_number >= 8;
  194. const uint8_t ind = over_7 ? 1 : 0;
  195. switch (PORT_ALPHA(dp)) { // get alt function
  196. case 'A' : alt_all = GPIOA->AFR[ind]; break;
  197. case 'B' : alt_all = GPIOB->AFR[ind]; break;
  198. case 'C' : alt_all = GPIOC->AFR[ind]; break;
  199. case 'D' : alt_all = GPIOD->AFR[ind]; break;
  200. #ifdef PE_0
  201. case 'E' : alt_all = GPIOE->AFR[ind]; break;
  202. #elif defined (PF_0)
  203. case 'F' : alt_all = GPIOF->AFR[ind]; break;
  204. #elif defined (PG_0)
  205. case 'G' : alt_all = GPIOG->AFR[ind]; break;
  206. #elif defined (PH_0)
  207. case 'H' : alt_all = GPIOH->AFR[ind]; break;
  208. #elif defined (PI_0)
  209. case 'I' : alt_all = GPIOI->AFR[ind]; break;
  210. #elif defined (PJ_0)
  211. case 'J' : alt_all = GPIOJ->AFR[ind]; break;
  212. #elif defined (PK_0)
  213. case 'K' : alt_all = GPIOK->AFR[ind]; break;
  214. #elif defined (PL_0)
  215. case 'L' : alt_all = GPIOL->AFR[ind]; break;
  216. #endif
  217. }
  218. if (over_7) pin_number -= 8;
  219. uint8_t alt_func = (alt_all >> (4 * pin_number)) & 0x0F;
  220. SERIAL_ECHOPGM("Alt Function: ", alt_func);
  221. if (alt_func < 10) SERIAL_CHAR(' ');
  222. SERIAL_ECHOPGM(" - ");
  223. switch (alt_func) {
  224. case 0 : SERIAL_ECHOPGM("system (misc. I/O)"); break;
  225. case 1 : SERIAL_ECHOPGM("TIM1/TIM2 (probably PWM)"); break;
  226. case 2 : SERIAL_ECHOPGM("TIM3..5 (probably PWM)"); break;
  227. case 3 : SERIAL_ECHOPGM("TIM8..11 (probably PWM)"); break;
  228. case 4 : SERIAL_ECHOPGM("I2C1..3"); break;
  229. case 5 : SERIAL_ECHOPGM("SPI1/SPI2"); break;
  230. case 6 : SERIAL_ECHOPGM("SPI3"); break;
  231. case 7 : SERIAL_ECHOPGM("USART1..3"); break;
  232. case 8 : SERIAL_ECHOPGM("USART4..6"); break;
  233. case 9 : SERIAL_ECHOPGM("CAN1/CAN2, TIM12..14 (probably PWM)"); break;
  234. case 10 : SERIAL_ECHOPGM("OTG"); break;
  235. case 11 : SERIAL_ECHOPGM("ETH"); break;
  236. case 12 : SERIAL_ECHOPGM("FSMC, SDIO, OTG"); break;
  237. case 13 : SERIAL_ECHOPGM("DCMI"); break;
  238. case 14 : SERIAL_ECHOPGM("unused (shouldn't see this)"); break;
  239. case 15 : SERIAL_ECHOPGM("EVENTOUT"); break;
  240. }
  241. }
  242. #else
  243. // TODO: F1 doesn't support changing pins function, so we need to check the function of the PIN and if it's enabled
  244. #endif
  245. } // pwm_details