My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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serial.h 17KB

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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 "../inc/MarlinConfig.h"
  24. #include "serial_hook.h"
  25. // Commonly-used strings in serial output
  26. extern const char NUL_STR[], SP_P_STR[], SP_T_STR[],
  27. X_STR[], Y_STR[], Z_STR[], E_STR[],
  28. X_LBL[], Y_LBL[], Z_LBL[], E_LBL[],
  29. SP_A_STR[], SP_B_STR[], SP_C_STR[],
  30. SP_X_STR[], SP_Y_STR[], SP_Z_STR[], SP_E_STR[],
  31. SP_X_LBL[], SP_Y_LBL[], SP_Z_LBL[], SP_E_LBL[];
  32. //
  33. // Debugging flags for use by M111
  34. //
  35. enum MarlinDebugFlags : uint8_t {
  36. MARLIN_DEBUG_NONE = 0,
  37. MARLIN_DEBUG_ECHO = _BV(0), ///< Echo commands in order as they are processed
  38. MARLIN_DEBUG_INFO = _BV(1), ///< Print messages for code that has debug output
  39. MARLIN_DEBUG_ERRORS = _BV(2), ///< Not implemented
  40. MARLIN_DEBUG_DRYRUN = _BV(3), ///< Ignore temperature setting and E movement commands
  41. MARLIN_DEBUG_COMMUNICATION = _BV(4), ///< Not implemented
  42. #if ENABLED(DEBUG_LEVELING_FEATURE)
  43. MARLIN_DEBUG_LEVELING = _BV(5), ///< Print detailed output for homing and leveling
  44. MARLIN_DEBUG_MESH_ADJUST = _BV(6), ///< UBL bed leveling
  45. #else
  46. MARLIN_DEBUG_LEVELING = 0,
  47. MARLIN_DEBUG_MESH_ADJUST = 0,
  48. #endif
  49. MARLIN_DEBUG_ALL = 0xFF
  50. };
  51. extern uint8_t marlin_debug_flags;
  52. #define DEBUGGING(F) (marlin_debug_flags & (MARLIN_DEBUG_## F))
  53. //
  54. // Serial redirection
  55. //
  56. #define SERIAL_ALL 0x7F
  57. #if HAS_MULTI_SERIAL
  58. #define _PORT_REDIRECT(n,p) REMEMBER(n,multiSerial.portMask,p)
  59. #define _PORT_RESTORE(n,p) RESTORE(n)
  60. #define SERIAL_ASSERT(P) if(multiSerial.portMask!=(P)){ debugger(); }
  61. #ifdef SERIAL_CATCHALL
  62. typedef MultiSerial<decltype(MYSERIAL), decltype(SERIAL_CATCHALL), 0> SerialOutputT;
  63. #else
  64. typedef MultiSerial<decltype(MYSERIAL0), TERN(HAS_ETHERNET, ConditionalSerial<decltype(MYSERIAL1)>, decltype(MYSERIAL1)), 0> SerialOutputT;
  65. #endif
  66. extern SerialOutputT multiSerial;
  67. #define SERIAL_IMPL multiSerial
  68. #else
  69. #define _PORT_REDIRECT(n,p) NOOP
  70. #define _PORT_RESTORE(n) NOOP
  71. #define SERIAL_ASSERT(P) NOOP
  72. #define SERIAL_IMPL MYSERIAL0
  73. #endif
  74. #define SERIAL_OUT(WHAT, V...) (void)SERIAL_IMPL.WHAT(V)
  75. #define PORT_REDIRECT(p) _PORT_REDIRECT(1,p)
  76. #define PORT_RESTORE() _PORT_RESTORE(1)
  77. #define SERIAL_PORTMASK(P) _BV(P)
  78. //
  79. // SERIAL_CHAR - Print one or more individual chars
  80. //
  81. inline void SERIAL_CHAR(char a) { SERIAL_IMPL.write(a); }
  82. template <typename ... Args>
  83. void SERIAL_CHAR(char a, Args ... args) { SERIAL_IMPL.write(a); SERIAL_CHAR(args ...); }
  84. /**
  85. * SERIAL_ECHO - Print a single string or value.
  86. * Any numeric parameter (including char) is printed as a base-10 number.
  87. * A string pointer or literal will be output as a string.
  88. *
  89. * NOTE: Use SERIAL_CHAR to print char as a single character.
  90. */
  91. template <typename T>
  92. void SERIAL_ECHO(T x) { SERIAL_IMPL.print(x); }
  93. // Wrapper for ECHO commands to interpret a char
  94. typedef struct SerialChar { char c; SerialChar(char n) : c(n) { } } serial_char_t;
  95. inline void SERIAL_ECHO(serial_char_t x) { SERIAL_IMPL.write(x.c); }
  96. #define AS_CHAR(C) serial_char_t(C)
  97. // SERIAL_ECHO_F prints a floating point value with optional precision
  98. inline void SERIAL_ECHO_F(EnsureDouble x, int digit = 2) { SERIAL_IMPL.print(x, digit); }
  99. template <typename T>
  100. void SERIAL_ECHOLN(T x) { SERIAL_IMPL.println(x); }
  101. // SERIAL_PRINT works like SERIAL_ECHO but allow to specify the encoding base of the number printed
  102. template <typename T, typename U>
  103. void SERIAL_PRINT(T x, U y) { SERIAL_IMPL.print(x, y); }
  104. template <typename T, typename U>
  105. void SERIAL_PRINTLN(T x, U y) { SERIAL_IMPL.println(x, y); }
  106. // Flush the serial port
  107. inline void SERIAL_FLUSH() { SERIAL_IMPL.flush(); }
  108. inline void SERIAL_FLUSHTX() { SERIAL_IMPL.flushTX(); }
  109. // Print a single PROGMEM string to serial
  110. void serialprintPGM(PGM_P str);
  111. // SERIAL_ECHOPAIR / SERIAL_ECHOPAIR_P is used to output a key value pair. The key must be a string and the value can be anything
  112. // Print up to 12 pairs of values. Odd elements auto-wrapped in PSTR().
  113. #define __SEP_N(N,V...) _SEP_##N(V)
  114. #define _SEP_N(N,V...) __SEP_N(N,V)
  115. #define _SEP_1(PRE) SERIAL_ECHOPGM(PRE)
  116. #define _SEP_2(PRE,V) serial_echopair_PGM(PSTR(PRE),V)
  117. #define _SEP_3(a,b,c) do{ _SEP_2(a,b); SERIAL_ECHOPGM(c); }while(0)
  118. #define _SEP_4(a,b,V...) do{ _SEP_2(a,b); _SEP_2(V); }while(0)
  119. #define _SEP_5(a,b,V...) do{ _SEP_2(a,b); _SEP_3(V); }while(0)
  120. #define _SEP_6(a,b,V...) do{ _SEP_2(a,b); _SEP_4(V); }while(0)
  121. #define _SEP_7(a,b,V...) do{ _SEP_2(a,b); _SEP_5(V); }while(0)
  122. #define _SEP_8(a,b,V...) do{ _SEP_2(a,b); _SEP_6(V); }while(0)
  123. #define _SEP_9(a,b,V...) do{ _SEP_2(a,b); _SEP_7(V); }while(0)
  124. #define _SEP_10(a,b,V...) do{ _SEP_2(a,b); _SEP_8(V); }while(0)
  125. #define _SEP_11(a,b,V...) do{ _SEP_2(a,b); _SEP_9(V); }while(0)
  126. #define _SEP_12(a,b,V...) do{ _SEP_2(a,b); _SEP_10(V); }while(0)
  127. #define _SEP_13(a,b,V...) do{ _SEP_2(a,b); _SEP_11(V); }while(0)
  128. #define _SEP_14(a,b,V...) do{ _SEP_2(a,b); _SEP_12(V); }while(0)
  129. #define _SEP_15(a,b,V...) do{ _SEP_2(a,b); _SEP_13(V); }while(0)
  130. #define _SEP_16(a,b,V...) do{ _SEP_2(a,b); _SEP_14(V); }while(0)
  131. #define _SEP_17(a,b,V...) do{ _SEP_2(a,b); _SEP_15(V); }while(0)
  132. #define _SEP_18(a,b,V...) do{ _SEP_2(a,b); _SEP_16(V); }while(0)
  133. #define _SEP_19(a,b,V...) do{ _SEP_2(a,b); _SEP_17(V); }while(0)
  134. #define _SEP_20(a,b,V...) do{ _SEP_2(a,b); _SEP_18(V); }while(0)
  135. #define _SEP_21(a,b,V...) do{ _SEP_2(a,b); _SEP_19(V); }while(0)
  136. #define _SEP_22(a,b,V...) do{ _SEP_2(a,b); _SEP_20(V); }while(0)
  137. #define _SEP_23(a,b,V...) do{ _SEP_2(a,b); _SEP_21(V); }while(0)
  138. #define _SEP_24(a,b,V...) do{ _SEP_2(a,b); _SEP_22(V); }while(0)
  139. #define SERIAL_ECHOPAIR(V...) _SEP_N(NUM_ARGS(V),V)
  140. // Print up to 12 pairs of values. Odd elements must be PSTR pointers.
  141. #define __SEP_N_P(N,V...) _SEP_##N##_P(V)
  142. #define _SEP_N_P(N,V...) __SEP_N_P(N,V)
  143. #define _SEP_1_P(PRE) serialprintPGM(PRE)
  144. #define _SEP_2_P(PRE,V) serial_echopair_PGM(PRE,V)
  145. #define _SEP_3_P(a,b,c) do{ _SEP_2_P(a,b); serialprintPGM(c); }while(0)
  146. #define _SEP_4_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_2_P(V); }while(0)
  147. #define _SEP_5_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_3_P(V); }while(0)
  148. #define _SEP_6_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_4_P(V); }while(0)
  149. #define _SEP_7_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_5_P(V); }while(0)
  150. #define _SEP_8_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_6_P(V); }while(0)
  151. #define _SEP_9_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_7_P(V); }while(0)
  152. #define _SEP_10_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_8_P(V); }while(0)
  153. #define _SEP_11_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_9_P(V); }while(0)
  154. #define _SEP_12_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_10_P(V); }while(0)
  155. #define _SEP_13_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_11_P(V); }while(0)
  156. #define _SEP_14_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_12_P(V); }while(0)
  157. #define _SEP_15_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_13_P(V); }while(0)
  158. #define _SEP_16_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_14_P(V); }while(0)
  159. #define _SEP_17_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_15_P(V); }while(0)
  160. #define _SEP_18_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_16_P(V); }while(0)
  161. #define _SEP_19_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_17_P(V); }while(0)
  162. #define _SEP_20_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_18_P(V); }while(0)
  163. #define _SEP_21_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_19_P(V); }while(0)
  164. #define _SEP_22_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_20_P(V); }while(0)
  165. #define _SEP_23_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_21_P(V); }while(0)
  166. #define _SEP_24_P(a,b,V...) do{ _SEP_2_P(a,b); _SEP_22_P(V); }while(0)
  167. // SERIAL_ECHOPAIR_P is used to output a key value pair. Unlike SERIAL_ECHOPAIR, the key must be a PGM string already and the value can be anything
  168. #define SERIAL_ECHOPAIR_P(V...) _SEP_N_P(NUM_ARGS(V),V)
  169. // Print up to 12 pairs of values followed by newline
  170. #define __SELP_N(N,V...) _SELP_##N(V)
  171. #define _SELP_N(N,V...) __SELP_N(N,V)
  172. #define _SELP_1(PRE) SERIAL_ECHOLNPGM(PRE)
  173. #define _SELP_2(PRE,V) do{ serial_echopair_PGM(PSTR(PRE),V); SERIAL_EOL(); }while(0)
  174. #define _SELP_3(a,b,c) do{ _SEP_2(a,b); SERIAL_ECHOLNPGM(c); }while(0)
  175. #define _SELP_4(a,b,V...) do{ _SEP_2(a,b); _SELP_2(V); }while(0)
  176. #define _SELP_5(a,b,V...) do{ _SEP_2(a,b); _SELP_3(V); }while(0)
  177. #define _SELP_6(a,b,V...) do{ _SEP_2(a,b); _SELP_4(V); }while(0)
  178. #define _SELP_7(a,b,V...) do{ _SEP_2(a,b); _SELP_5(V); }while(0)
  179. #define _SELP_8(a,b,V...) do{ _SEP_2(a,b); _SELP_6(V); }while(0)
  180. #define _SELP_9(a,b,V...) do{ _SEP_2(a,b); _SELP_7(V); }while(0)
  181. #define _SELP_10(a,b,V...) do{ _SEP_2(a,b); _SELP_8(V); }while(0)
  182. #define _SELP_11(a,b,V...) do{ _SEP_2(a,b); _SELP_9(V); }while(0)
  183. #define _SELP_12(a,b,V...) do{ _SEP_2(a,b); _SELP_10(V); }while(0)
  184. #define _SELP_13(a,b,V...) do{ _SEP_2(a,b); _SELP_11(V); }while(0)
  185. #define _SELP_14(a,b,V...) do{ _SEP_2(a,b); _SELP_12(V); }while(0)
  186. #define _SELP_15(a,b,V...) do{ _SEP_2(a,b); _SELP_13(V); }while(0)
  187. #define _SELP_16(a,b,V...) do{ _SEP_2(a,b); _SELP_14(V); }while(0)
  188. #define _SELP_17(a,b,V...) do{ _SEP_2(a,b); _SELP_15(V); }while(0)
  189. #define _SELP_18(a,b,V...) do{ _SEP_2(a,b); _SELP_16(V); }while(0)
  190. #define _SELP_19(a,b,V...) do{ _SEP_2(a,b); _SELP_17(V); }while(0)
  191. #define _SELP_20(a,b,V...) do{ _SEP_2(a,b); _SELP_18(V); }while(0)
  192. #define _SELP_21(a,b,V...) do{ _SEP_2(a,b); _SELP_19(V); }while(0)
  193. #define _SELP_22(a,b,V...) do{ _SEP_2(a,b); _SELP_20(V); }while(0)
  194. #define _SELP_23(a,b,V...) do{ _SEP_2(a,b); _SELP_21(V); }while(0)
  195. #define _SELP_24(a,b,V...) do{ _SEP_2(a,b); _SELP_22(V); }while(0)
  196. #define _SELP_25(a,b,V...) do{ _SEP_2(a,b); _SELP_23(V); }while(0)
  197. #define _SELP_26(a,b,V...) do{ _SEP_2(a,b); _SELP_24(V); }while(0)
  198. #define _SELP_27(a,b,V...) do{ _SEP_2(a,b); _SELP_25(V); }while(0)
  199. #define _SELP_28(a,b,V...) do{ _SEP_2(a,b); _SELP_26(V); }while(0)
  200. #define _SELP_29(a,b,V...) do{ _SEP_2(a,b); _SELP_27(V); }while(0)
  201. #define _SELP_30(a,b,V...) do{ _SEP_2(a,b); _SELP_28(V); }while(0) // Eat two args, pass the rest up
  202. #define SERIAL_ECHOLNPAIR(V...) _SELP_N(NUM_ARGS(V),V)
  203. // Print up to 12 pairs of values followed by newline
  204. #define __SELP_N_P(N,V...) _SELP_##N##_P(V)
  205. #define _SELP_N_P(N,V...) __SELP_N_P(N,V)
  206. #define _SELP_1_P(PRE) serialprintPGM(PRE)
  207. #define _SELP_2_P(PRE,V) do{ serial_echopair_PGM(PRE,V); SERIAL_EOL(); }while(0)
  208. #define _SELP_3_P(a,b,c) do{ _SEP_2_P(a,b); serialprintPGM(c); }while(0)
  209. #define _SELP_4_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_2_P(V); }while(0)
  210. #define _SELP_5_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_3_P(V); }while(0)
  211. #define _SELP_6_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_4_P(V); }while(0)
  212. #define _SELP_7_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_5_P(V); }while(0)
  213. #define _SELP_8_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_6_P(V); }while(0)
  214. #define _SELP_9_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_7_P(V); }while(0)
  215. #define _SELP_10_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_8_P(V); }while(0)
  216. #define _SELP_11_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_9_P(V); }while(0)
  217. #define _SELP_12_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_10_P(V); }while(0)
  218. #define _SELP_13_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_11_P(V); }while(0)
  219. #define _SELP_14_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_12_P(V); }while(0)
  220. #define _SELP_15_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_13_P(V); }while(0)
  221. #define _SELP_16_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_14_P(V); }while(0)
  222. #define _SELP_17_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_15_P(V); }while(0)
  223. #define _SELP_18_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_16_P(V); }while(0)
  224. #define _SELP_19_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_17_P(V); }while(0)
  225. #define _SELP_20_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_18_P(V); }while(0)
  226. #define _SELP_21_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_19_P(V); }while(0)
  227. #define _SELP_22_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_20_P(V); }while(0)
  228. #define _SELP_23_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_21_P(V); }while(0)
  229. #define _SELP_24_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_22_P(V); }while(0)
  230. #define _SELP_25_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_23_P(V); }while(0)
  231. #define _SELP_26_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_24_P(V); }while(0)
  232. #define _SELP_27_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_25_P(V); }while(0)
  233. #define _SELP_28_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_26_P(V); }while(0)
  234. #define _SELP_29_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_27_P(V); }while(0)
  235. #define _SELP_30_P(a,b,V...) do{ _SEP_2_P(a,b); _SELP_28_P(V); }while(0) // Eat two args, pass the rest up
  236. #define SERIAL_ECHOLNPAIR_P(V...) _SELP_N_P(NUM_ARGS(V),V)
  237. #ifdef AllowDifferentTypeInList
  238. inline void SERIAL_ECHOLIST_IMPL() {}
  239. template <typename T>
  240. void SERIAL_ECHOLIST_IMPL(T && t) { SERIAL_IMPL.print(t); }
  241. template <typename T, typename ... Args>
  242. void SERIAL_ECHOLIST_IMPL(T && t, Args && ... args) {
  243. SERIAL_IMPL.print(t);
  244. serialprintPGM(PSTR(", "));
  245. SERIAL_ECHOLIST_IMPL(args...);
  246. }
  247. template <typename ... Args>
  248. void SERIAL_ECHOLIST(PGM_P const str, Args && ... args) {
  249. SERIAL_IMPL.print(str);
  250. SERIAL_ECHOLIST_IMPL(args...);
  251. }
  252. #else // Optimization if the listed type are all the same (seems to be the case in the codebase so use that instead)
  253. template <typename ... Args>
  254. void SERIAL_ECHOLIST(PGM_P const str, Args && ... args) {
  255. serialprintPGM(str);
  256. typename Private::first_type_of<Args...>::type values[] = { args... };
  257. constexpr size_t argsSize = sizeof...(args);
  258. for (size_t i = 0; i < argsSize; i++) {
  259. if (i) serialprintPGM(PSTR(", "));
  260. SERIAL_IMPL.print(values[i]);
  261. }
  262. }
  263. #endif
  264. #define SERIAL_ECHOPGM_P(P) (serialprintPGM(P))
  265. #define SERIAL_ECHOLNPGM_P(P) (serialprintPGM(P "\n"))
  266. #define SERIAL_ECHOPGM(S) (serialprintPGM(PSTR(S)))
  267. #define SERIAL_ECHOLNPGM(S) (serialprintPGM(PSTR(S "\n")))
  268. #define SERIAL_ECHOPAIR_F_P(P,V...) do{ serialprintPGM(P); SERIAL_ECHO_F(V); }while(0)
  269. #define SERIAL_ECHOLNPAIR_F_P(V...) do{ SERIAL_ECHOPAIR_F_P(V); SERIAL_EOL(); }while(0)
  270. #define SERIAL_ECHOPAIR_F(S,V...) SERIAL_ECHOPAIR_F_P(PSTR(S),V)
  271. #define SERIAL_ECHOLNPAIR_F(V...) do{ SERIAL_ECHOPAIR_F(V); SERIAL_EOL(); }while(0)
  272. #define SERIAL_ECHO_START() serial_echo_start()
  273. #define SERIAL_ERROR_START() serial_error_start()
  274. #define SERIAL_EOL() SERIAL_CHAR('\n')
  275. #define SERIAL_ECHO_MSG(V...) do{ SERIAL_ECHO_START(); SERIAL_ECHOLNPAIR(V); }while(0)
  276. #define SERIAL_ERROR_MSG(V...) do{ SERIAL_ERROR_START(); SERIAL_ECHOLNPAIR(V); }while(0)
  277. #define SERIAL_ECHO_SP(C) serial_spaces(C)
  278. #define SERIAL_ECHO_TERNARY(TF, PRE, ON, OFF, POST) serial_ternary(TF, PSTR(PRE), PSTR(ON), PSTR(OFF), PSTR(POST))
  279. #if SERIAL_FLOAT_PRECISION
  280. #define SERIAL_DECIMAL(V) SERIAL_PRINT(V, SERIAL_FLOAT_PRECISION)
  281. #else
  282. #define SERIAL_DECIMAL(V) SERIAL_ECHO(V)
  283. #endif
  284. //
  285. // Functions for serial printing from PROGMEM. (Saves loads of SRAM.)
  286. //
  287. void serial_echopair_PGM(PGM_P const s_P, serial_char_t v);
  288. void serial_echopair_PGM(PGM_P const s_P, const char *v);
  289. void serial_echopair_PGM(PGM_P const s_P, char v);
  290. void serial_echopair_PGM(PGM_P const s_P, int v);
  291. void serial_echopair_PGM(PGM_P const s_P, long v);
  292. void serial_echopair_PGM(PGM_P const s_P, float v);
  293. void serial_echopair_PGM(PGM_P const s_P, double v);
  294. void serial_echopair_PGM(PGM_P const s_P, unsigned char v);
  295. void serial_echopair_PGM(PGM_P const s_P, unsigned int v);
  296. void serial_echopair_PGM(PGM_P const s_P, unsigned long v);
  297. inline void serial_echopair_PGM(PGM_P const s_P, bool v) { serial_echopair_PGM(s_P, (int)v); }
  298. inline void serial_echopair_PGM(PGM_P const s_P, void *v) { serial_echopair_PGM(s_P, (uintptr_t)v); }
  299. void serial_echo_start();
  300. void serial_error_start();
  301. void serial_ternary(const bool onoff, PGM_P const pre, PGM_P const on, PGM_P const off, PGM_P const post=nullptr);
  302. void serialprint_onoff(const bool onoff);
  303. void serialprintln_onoff(const bool onoff);
  304. void serialprint_truefalse(const bool tf);
  305. void serial_spaces(uint8_t count);
  306. void print_bin(const uint16_t val);
  307. void print_xyz(const float &x, const float &y, const float &z, PGM_P const prefix=nullptr, PGM_P const suffix=nullptr);
  308. inline void print_xyz(const xyz_pos_t &xyz, PGM_P const prefix=nullptr, PGM_P const suffix=nullptr) {
  309. print_xyz(xyz.x, xyz.y, xyz.z, prefix, suffix);
  310. }
  311. #define SERIAL_POS(SUFFIX,VAR) do { print_xyz(VAR, PSTR(" " STRINGIFY(VAR) "="), PSTR(" : " SUFFIX "\n")); }while(0)
  312. #define SERIAL_XYZ(PREFIX,V...) do { print_xyz(V, PSTR(PREFIX), nullptr); }while(0)