My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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Marlin.h 10.0KB

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  1. // Tonokip RepRap firmware rewrite based off of Hydra-mmm firmware.
  2. // License: GPL
  3. #ifndef MARLIN_H
  4. #define MARLIN_H
  5. #define FORCE_INLINE __attribute__((always_inline)) inline
  6. #include <math.h>
  7. #include <stdio.h>
  8. #include <stdlib.h>
  9. #include <string.h>
  10. #include <inttypes.h>
  11. #include <util/delay.h>
  12. #include <avr/pgmspace.h>
  13. #include <avr/eeprom.h>
  14. #include <avr/interrupt.h>
  15. #include "fastio.h"
  16. #include "Configuration.h"
  17. #ifndef SANITYCHECK_H
  18. #error Your Configuration.h and Configuration_adv.h files are outdated!
  19. #endif
  20. #if (ARDUINO >= 100)
  21. #include "Arduino.h"
  22. #else
  23. #include "WProgram.h"
  24. #endif
  25. #define BIT(b) (1<<(b))
  26. #define TEST(n,b) (((n)&BIT(b))!=0)
  27. #define RADIANS(d) ((d)*M_PI/180.0)
  28. #define DEGREES(r) ((d)*180.0/M_PI)
  29. #define NOLESS(v,n) do{ if (v < n) v = n; }while(0)
  30. #define NOMORE(v,n) do{ if (v > n) v = n; }while(0)
  31. typedef unsigned long millis_t;
  32. // Arduino < 1.0.0 does not define this, so we need to do it ourselves
  33. #ifndef analogInputToDigitalPin
  34. #define analogInputToDigitalPin(p) ((p) + 0xA0)
  35. #endif
  36. #ifdef AT90USB
  37. #include "HardwareSerial.h"
  38. #endif
  39. #include "MarlinSerial.h"
  40. #ifndef cbi
  41. #define cbi(sfr, bit) (_SFR_BYTE(sfr) &= ~_BV(bit))
  42. #endif
  43. #ifndef sbi
  44. #define sbi(sfr, bit) (_SFR_BYTE(sfr) |= _BV(bit))
  45. #endif
  46. #include "WString.h"
  47. #ifdef AT90USB
  48. #ifdef BTENABLED
  49. #define MYSERIAL bt
  50. #else
  51. #define MYSERIAL Serial
  52. #endif // BTENABLED
  53. #else
  54. #define MYSERIAL MSerial
  55. #endif
  56. #define SERIAL_CHAR(x) MYSERIAL.write(x)
  57. #define SERIAL_EOL SERIAL_CHAR('\n')
  58. #define SERIAL_PROTOCOLCHAR(x) SERIAL_CHAR(x)
  59. #define SERIAL_PROTOCOL(x) MYSERIAL.print(x)
  60. #define SERIAL_PROTOCOL_F(x,y) MYSERIAL.print(x,y)
  61. #define SERIAL_PROTOCOLPGM(x) serialprintPGM(PSTR(x))
  62. #define SERIAL_PROTOCOLLN(x) do{ MYSERIAL.print(x),MYSERIAL.write('\n'); }while(0)
  63. #define SERIAL_PROTOCOLLNPGM(x) do{ serialprintPGM(PSTR(x)),MYSERIAL.write('\n'); }while(0)
  64. extern const char errormagic[] PROGMEM;
  65. extern const char echomagic[] PROGMEM;
  66. #define SERIAL_ERROR_START serialprintPGM(errormagic)
  67. #define SERIAL_ERROR(x) SERIAL_PROTOCOL(x)
  68. #define SERIAL_ERRORPGM(x) SERIAL_PROTOCOLPGM(x)
  69. #define SERIAL_ERRORLN(x) SERIAL_PROTOCOLLN(x)
  70. #define SERIAL_ERRORLNPGM(x) SERIAL_PROTOCOLLNPGM(x)
  71. #define SERIAL_ECHO_START serialprintPGM(echomagic)
  72. #define SERIAL_ECHO(x) SERIAL_PROTOCOL(x)
  73. #define SERIAL_ECHOPGM(x) SERIAL_PROTOCOLPGM(x)
  74. #define SERIAL_ECHOLN(x) SERIAL_PROTOCOLLN(x)
  75. #define SERIAL_ECHOLNPGM(x) SERIAL_PROTOCOLLNPGM(x)
  76. #define SERIAL_ECHOPAIR(name,value) do{ serial_echopair_P(PSTR(name),(value)); }while(0)
  77. void serial_echopair_P(const char *s_P, float v);
  78. void serial_echopair_P(const char *s_P, double v);
  79. void serial_echopair_P(const char *s_P, unsigned long v);
  80. // Things to write to serial from Program memory. Saves 400 to 2k of RAM.
  81. FORCE_INLINE void serialprintPGM(const char *str) {
  82. char ch;
  83. while ((ch = pgm_read_byte(str))) {
  84. MYSERIAL.write(ch);
  85. str++;
  86. }
  87. }
  88. void get_command();
  89. void process_commands();
  90. void manage_inactivity(bool ignore_stepper_queue=false);
  91. #if defined(DUAL_X_CARRIAGE) && HAS_X_ENABLE && HAS_X2_ENABLE
  92. #define enable_x() do { X_ENABLE_WRITE( X_ENABLE_ON); X2_ENABLE_WRITE( X_ENABLE_ON); } while (0)
  93. #define disable_x() do { X_ENABLE_WRITE(!X_ENABLE_ON); X2_ENABLE_WRITE(!X_ENABLE_ON); axis_known_position[X_AXIS] = false; } while (0)
  94. #elif HAS_X_ENABLE
  95. #define enable_x() X_ENABLE_WRITE( X_ENABLE_ON)
  96. #define disable_x() { X_ENABLE_WRITE(!X_ENABLE_ON); axis_known_position[X_AXIS] = false; }
  97. #else
  98. #define enable_x() ;
  99. #define disable_x() ;
  100. #endif
  101. #if HAS_Y_ENABLE
  102. #ifdef Y_DUAL_STEPPER_DRIVERS
  103. #define enable_y() { Y_ENABLE_WRITE( Y_ENABLE_ON); Y2_ENABLE_WRITE(Y_ENABLE_ON); }
  104. #define disable_y() { Y_ENABLE_WRITE(!Y_ENABLE_ON); Y2_ENABLE_WRITE(!Y_ENABLE_ON); axis_known_position[Y_AXIS] = false; }
  105. #else
  106. #define enable_y() Y_ENABLE_WRITE( Y_ENABLE_ON)
  107. #define disable_y() { Y_ENABLE_WRITE(!Y_ENABLE_ON); axis_known_position[Y_AXIS] = false; }
  108. #endif
  109. #else
  110. #define enable_y() ;
  111. #define disable_y() ;
  112. #endif
  113. #if HAS_Z_ENABLE
  114. #ifdef Z_DUAL_STEPPER_DRIVERS
  115. #define enable_z() { Z_ENABLE_WRITE( Z_ENABLE_ON); Z2_ENABLE_WRITE(Z_ENABLE_ON); }
  116. #define disable_z() { Z_ENABLE_WRITE(!Z_ENABLE_ON); Z2_ENABLE_WRITE(!Z_ENABLE_ON); axis_known_position[Z_AXIS] = false; }
  117. #else
  118. #define enable_z() Z_ENABLE_WRITE( Z_ENABLE_ON)
  119. #define disable_z() { Z_ENABLE_WRITE(!Z_ENABLE_ON); axis_known_position[Z_AXIS] = false; }
  120. #endif
  121. #else
  122. #define enable_z() ;
  123. #define disable_z() ;
  124. #endif
  125. #if HAS_E0_ENABLE
  126. #define enable_e0() E0_ENABLE_WRITE( E_ENABLE_ON)
  127. #define disable_e0() E0_ENABLE_WRITE(!E_ENABLE_ON)
  128. #else
  129. #define enable_e0() /* nothing */
  130. #define disable_e0() /* nothing */
  131. #endif
  132. #if (EXTRUDERS > 1) && HAS_E1_ENABLE
  133. #define enable_e1() E1_ENABLE_WRITE( E_ENABLE_ON)
  134. #define disable_e1() E1_ENABLE_WRITE(!E_ENABLE_ON)
  135. #else
  136. #define enable_e1() /* nothing */
  137. #define disable_e1() /* nothing */
  138. #endif
  139. #if (EXTRUDERS > 2) && HAS_E2_ENABLE
  140. #define enable_e2() E2_ENABLE_WRITE( E_ENABLE_ON)
  141. #define disable_e2() E2_ENABLE_WRITE(!E_ENABLE_ON)
  142. #else
  143. #define enable_e2() /* nothing */
  144. #define disable_e2() /* nothing */
  145. #endif
  146. #if (EXTRUDERS > 3) && HAS_E3_ENABLE
  147. #define enable_e3() E3_ENABLE_WRITE( E_ENABLE_ON)
  148. #define disable_e3() E3_ENABLE_WRITE(!E_ENABLE_ON)
  149. #else
  150. #define enable_e3() /* nothing */
  151. #define disable_e3() /* nothing */
  152. #endif
  153. /**
  154. * The axis order in all axis related arrays is X, Y, Z, E
  155. */
  156. #define NUM_AXIS 4
  157. /**
  158. * Axis indices as enumerated constants
  159. *
  160. * A_AXIS and B_AXIS are used by COREXY printers
  161. * X_HEAD and Y_HEAD is used for systems that don't have a 1:1 relationship between X_AXIS and X Head movement, like CoreXY bots.
  162. */
  163. enum AxisEnum {X_AXIS=0, Y_AXIS=1, A_AXIS=0, B_AXIS=1, Z_AXIS=2, E_AXIS=3, X_HEAD=4, Y_HEAD=5};
  164. enum EndstopEnum {X_MIN=0, Y_MIN=1, Z_MIN=2, Z_PROBE=3, X_MAX=4, Y_MAX=5, Z_MAX=6};
  165. void enable_all_steppers();
  166. void disable_all_steppers();
  167. void FlushSerialRequestResend();
  168. void ok_to_send();
  169. #ifdef DELTA
  170. void calculate_delta(float cartesian[3]);
  171. #ifdef ENABLE_AUTO_BED_LEVELING
  172. extern int delta_grid_spacing[2];
  173. void adjust_delta(float cartesian[3]);
  174. #endif
  175. extern float delta[3];
  176. #endif
  177. #ifdef SCARA
  178. void calculate_delta(float cartesian[3]);
  179. void calculate_SCARA_forward_Transform(float f_scara[3]);
  180. #endif
  181. void reset_bed_level();
  182. void prepare_move();
  183. void kill();
  184. void Stop();
  185. #ifdef FILAMENT_RUNOUT_SENSOR
  186. void filrunout();
  187. #endif
  188. /**
  189. * Debug flags - not yet widely applied
  190. */
  191. enum DebugFlags {
  192. DEBUG_ECHO = BIT(0),
  193. DEBUG_INFO = BIT(1),
  194. DEBUG_ERRORS = BIT(2),
  195. DEBUG_DRYRUN = BIT(3),
  196. DEBUG_COMMUNICATION = BIT(4)
  197. };
  198. extern uint8_t marlin_debug_flags;
  199. extern bool Running;
  200. inline bool IsRunning() { return Running; }
  201. inline bool IsStopped() { return !Running; }
  202. bool enqueuecommand(const char *cmd); //put a single ASCII command at the end of the current buffer or return false when it is full
  203. void enqueuecommands_P(const char *cmd); //put one or many ASCII commands at the end of the current buffer, read from flash
  204. void prepare_arc_move(char isclockwise);
  205. void clamp_to_software_endstops(float target[3]);
  206. extern millis_t previous_cmd_ms;
  207. inline void refresh_cmd_timeout() { previous_cmd_ms = millis(); }
  208. #ifdef FAST_PWM_FAN
  209. void setPwmFrequency(uint8_t pin, int val);
  210. #endif
  211. #ifndef CRITICAL_SECTION_START
  212. #define CRITICAL_SECTION_START unsigned char _sreg = SREG; cli();
  213. #define CRITICAL_SECTION_END SREG = _sreg;
  214. #endif
  215. extern float homing_feedrate[];
  216. extern bool axis_relative_modes[];
  217. extern int feedrate_multiplier;
  218. extern bool volumetric_enabled;
  219. extern int extruder_multiply[EXTRUDERS]; // sets extrude multiply factor (in percent) for each extruder individually
  220. extern float filament_size[EXTRUDERS]; // cross-sectional area of filament (in millimeters), typically around 1.75 or 2.85, 0 disables the volumetric calculations for the extruder.
  221. extern float volumetric_multiplier[EXTRUDERS]; // reciprocal of cross-sectional area of filament (in square millimeters), stored this way to reduce computational burden in planner
  222. extern float current_position[NUM_AXIS];
  223. extern float home_offset[3];
  224. #ifdef DELTA
  225. extern float endstop_adj[3];
  226. extern float delta_radius;
  227. extern float delta_diagonal_rod;
  228. extern float delta_segments_per_second;
  229. void recalc_delta_settings(float radius, float diagonal_rod);
  230. #elif defined(Z_DUAL_ENDSTOPS)
  231. extern float z_endstop_adj;
  232. #endif
  233. #ifdef SCARA
  234. extern float axis_scaling[3]; // Build size scaling
  235. #endif
  236. extern float min_pos[3];
  237. extern float max_pos[3];
  238. extern bool axis_known_position[3];
  239. #ifdef ENABLE_AUTO_BED_LEVELING
  240. extern float zprobe_zoffset;
  241. #endif
  242. #ifdef PREVENT_DANGEROUS_EXTRUDE
  243. extern float extrude_min_temp;
  244. #endif
  245. extern int fanSpeed;
  246. #ifdef BARICUDA
  247. extern int ValvePressure;
  248. extern int EtoPPressure;
  249. #endif
  250. #ifdef FAN_SOFT_PWM
  251. extern unsigned char fanSpeedSoftPwm;
  252. #endif
  253. #ifdef FILAMENT_SENSOR
  254. extern float filament_width_nominal; //holds the theoretical filament diameter ie., 3.00 or 1.75
  255. extern bool filament_sensor; //indicates that filament sensor readings should control extrusion
  256. extern float filament_width_meas; //holds the filament diameter as accurately measured
  257. extern signed char measurement_delay[]; //ring buffer to delay measurement
  258. extern int delay_index1, delay_index2; //ring buffer index. used by planner, temperature, and main code
  259. extern float delay_dist; //delay distance counter
  260. extern int meas_delay_cm; //delay distance
  261. #endif
  262. #ifdef FWRETRACT
  263. extern bool autoretract_enabled;
  264. extern bool retracted[EXTRUDERS];
  265. extern float retract_length, retract_length_swap, retract_feedrate, retract_zlift;
  266. extern float retract_recover_length, retract_recover_length_swap, retract_recover_feedrate;
  267. #endif
  268. extern millis_t print_job_start_ms;
  269. extern millis_t print_job_stop_ms;
  270. // Handling multiple extruders pins
  271. extern uint8_t active_extruder;
  272. #ifdef DIGIPOT_I2C
  273. extern void digipot_i2c_set_current( int channel, float current );
  274. extern void digipot_i2c_init();
  275. #endif
  276. extern void calculate_volumetric_multipliers();
  277. #endif //MARLIN_H