My Marlin configs for Fabrikator Mini and CTC i3 Pro B
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EEPROMwrite.h 7.6KB

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  1. #ifndef EEPROM_H
  2. #define EEPROM_H
  3. #include "Marlin.h"
  4. #include "planner.h"
  5. #include "temperature.h"
  6. //#include <EEPROM.h>
  7. template <class T> int EEPROM_writeAnything(int &ee, const T& value)
  8. {
  9. const byte* p = (const byte*)(const void*)&value;
  10. int i;
  11. for (i = 0; i < (int)sizeof(value); i++)
  12. eeprom_write_byte((unsigned char *)ee++, *p++);
  13. return i;
  14. }
  15. template <class T> int EEPROM_readAnything(int &ee, T& value)
  16. {
  17. byte* p = (byte*)(void*)&value;
  18. int i;
  19. for (i = 0; i < (int)sizeof(value); i++)
  20. *p++ = eeprom_read_byte((unsigned char *)ee++);
  21. return i;
  22. }
  23. //======================================================================================
  24. #define EEPROM_OFFSET 100
  25. // IMPORTANT: Whenever there are changes made to the variables stored in EEPROM
  26. // in the functions below, also increment the version number. This makes sure that
  27. // the default values are used whenever there is a change to the data, to prevent
  28. // wrong data being written to the variables.
  29. // ALSO: always make sure the variables in the Store and retrieve sections are in the same order.
  30. #define EEPROM_VERSION "V07"
  31. inline void EEPROM_StoreSettings()
  32. {
  33. #ifdef EEPROM_SETTINGS
  34. char ver[4]= "000";
  35. int i=EEPROM_OFFSET;
  36. EEPROM_writeAnything(i,ver); // invalidate data first
  37. EEPROM_writeAnything(i,axis_steps_per_unit);
  38. EEPROM_writeAnything(i,max_feedrate);
  39. EEPROM_writeAnything(i,max_acceleration_units_per_sq_second);
  40. EEPROM_writeAnything(i,acceleration);
  41. EEPROM_writeAnything(i,retract_acceleration);
  42. EEPROM_writeAnything(i,minimumfeedrate);
  43. EEPROM_writeAnything(i,mintravelfeedrate);
  44. EEPROM_writeAnything(i,minsegmenttime);
  45. EEPROM_writeAnything(i,max_xy_jerk);
  46. EEPROM_writeAnything(i,max_z_jerk);
  47. EEPROM_writeAnything(i,max_e_jerk);
  48. EEPROM_writeAnything(i,add_homeing);
  49. EEPROM_writeAnything(i,plaPreheatHotendTemp);
  50. EEPROM_writeAnything(i,plaPreheatHPBTemp);
  51. EEPROM_writeAnything(i,plaPreheatFanSpeed);
  52. EEPROM_writeAnything(i,absPreheatHotendTemp);
  53. EEPROM_writeAnything(i,absPreheatHPBTemp);
  54. EEPROM_writeAnything(i,absPreheatFanSpeed);
  55. #ifdef PIDTEMP
  56. EEPROM_writeAnything(i,Kp);
  57. EEPROM_writeAnything(i,Ki);
  58. EEPROM_writeAnything(i,Kd);
  59. #else
  60. EEPROM_writeAnything(i,3000);
  61. EEPROM_writeAnything(i,0);
  62. EEPROM_writeAnything(i,0);
  63. #endif
  64. char ver2[4]=EEPROM_VERSION;
  65. i=EEPROM_OFFSET;
  66. EEPROM_writeAnything(i,ver2); // validate data
  67. SERIAL_ECHO_START;
  68. SERIAL_ECHOLNPGM("Settings Stored");
  69. #endif //EEPROM_SETTINGS
  70. }
  71. inline void EEPROM_printSettings()
  72. { // if def=true, the default values will be used
  73. // #ifdef EEPROM_SETTINGS
  74. SERIAL_ECHO_START;
  75. SERIAL_ECHOLNPGM("Steps per unit:");
  76. SERIAL_ECHO_START;
  77. SERIAL_ECHOPAIR(" M92 X",axis_steps_per_unit[0]);
  78. SERIAL_ECHOPAIR(" Y",axis_steps_per_unit[1]);
  79. SERIAL_ECHOPAIR(" Z",axis_steps_per_unit[2]);
  80. SERIAL_ECHOPAIR(" E",axis_steps_per_unit[3]);
  81. SERIAL_ECHOLN("");
  82. SERIAL_ECHO_START;
  83. SERIAL_ECHOLNPGM("Maximum feedrates (mm/s):");
  84. SERIAL_ECHO_START;
  85. SERIAL_ECHOPAIR(" M203 X",max_feedrate[0]);
  86. SERIAL_ECHOPAIR(" Y",max_feedrate[1] );
  87. SERIAL_ECHOPAIR(" Z", max_feedrate[2] );
  88. SERIAL_ECHOPAIR(" E", max_feedrate[3]);
  89. SERIAL_ECHOLN("");
  90. SERIAL_ECHO_START;
  91. SERIAL_ECHOLNPGM("Maximum Acceleration (mm/s2):");
  92. SERIAL_ECHO_START;
  93. SERIAL_ECHOPAIR(" M201 X" ,max_acceleration_units_per_sq_second[0] );
  94. SERIAL_ECHOPAIR(" Y" , max_acceleration_units_per_sq_second[1] );
  95. SERIAL_ECHOPAIR(" Z" ,max_acceleration_units_per_sq_second[2] );
  96. SERIAL_ECHOPAIR(" E" ,max_acceleration_units_per_sq_second[3]);
  97. SERIAL_ECHOLN("");
  98. SERIAL_ECHO_START;
  99. SERIAL_ECHOLNPGM("Acceleration: S=acceleration, T=retract acceleration");
  100. SERIAL_ECHO_START;
  101. SERIAL_ECHOPAIR(" M204 S",acceleration );
  102. SERIAL_ECHOPAIR(" T" ,retract_acceleration);
  103. SERIAL_ECHOLN("");
  104. SERIAL_ECHO_START;
  105. SERIAL_ECHOLNPGM("Advanced variables: S=Min feedrate (mm/s), T=Min travel feedrate (mm/s), B=minimum segment time (ms), X=maximum xY jerk (mm/s), Z=maximum Z jerk (mm/s)");
  106. SERIAL_ECHO_START;
  107. SERIAL_ECHOPAIR(" M205 S",minimumfeedrate );
  108. SERIAL_ECHOPAIR(" T" ,mintravelfeedrate );
  109. SERIAL_ECHOPAIR(" B" ,minsegmenttime );
  110. SERIAL_ECHOPAIR(" X" ,max_xy_jerk );
  111. SERIAL_ECHOPAIR(" Z" ,max_z_jerk);
  112. SERIAL_ECHOPAIR(" E" ,max_e_jerk);
  113. SERIAL_ECHOLN("");
  114. SERIAL_ECHO_START;
  115. SERIAL_ECHOLNPGM("Home offset (mm):");
  116. SERIAL_ECHO_START;
  117. SERIAL_ECHOPAIR(" M206 X",add_homeing[0] );
  118. SERIAL_ECHOPAIR(" Y" ,add_homeing[1] );
  119. SERIAL_ECHOPAIR(" Z" ,add_homeing[2] );
  120. SERIAL_ECHOLN("");
  121. #ifdef PIDTEMP
  122. SERIAL_ECHO_START;
  123. SERIAL_ECHOLNPGM("PID settings:");
  124. SERIAL_ECHO_START;
  125. SERIAL_ECHOPAIR(" M301 P",Kp);
  126. SERIAL_ECHOPAIR(" I" ,Ki/PID_dT);
  127. SERIAL_ECHOPAIR(" D" ,Kd*PID_dT);
  128. SERIAL_ECHOLN("");
  129. #endif
  130. // #endif
  131. }
  132. inline void EEPROM_RetrieveSettings(bool def=false)
  133. { // if def=true, the default values will be used
  134. #ifdef EEPROM_SETTINGS
  135. int i=EEPROM_OFFSET;
  136. char stored_ver[4];
  137. char ver[4]=EEPROM_VERSION;
  138. EEPROM_readAnything(i,stored_ver); //read stored version
  139. // SERIAL_ECHOLN("Version: [" << ver << "] Stored version: [" << stored_ver << "]");
  140. if ((!def)&&(strncmp(ver,stored_ver,3)==0))
  141. { // version number match
  142. EEPROM_readAnything(i,axis_steps_per_unit);
  143. EEPROM_readAnything(i,max_feedrate);
  144. EEPROM_readAnything(i,max_acceleration_units_per_sq_second);
  145. EEPROM_readAnything(i,acceleration);
  146. EEPROM_readAnything(i,retract_acceleration);
  147. EEPROM_readAnything(i,minimumfeedrate);
  148. EEPROM_readAnything(i,mintravelfeedrate);
  149. EEPROM_readAnything(i,minsegmenttime);
  150. EEPROM_readAnything(i,max_xy_jerk);
  151. EEPROM_readAnything(i,max_z_jerk);
  152. EEPROM_readAnything(i,max_e_jerk);
  153. EEPROM_readAnything(i,add_homeing);
  154. EEPROM_readAnything(i,plaPreheatHotendTemp);
  155. EEPROM_readAnything(i,plaPreheatHPBTemp);
  156. EEPROM_readAnything(i,plaPreheatFanSpeed);
  157. EEPROM_readAnything(i,absPreheatHotendTemp);
  158. EEPROM_readAnything(i,absPreheatHPBTemp);
  159. EEPROM_readAnything(i,absPreheatFanSpeed);
  160. #ifndef PIDTEMP
  161. float Kp,Ki,Kd;
  162. #endif
  163. EEPROM_readAnything(i,Kp);
  164. EEPROM_readAnything(i,Ki);
  165. EEPROM_readAnything(i,Kd);
  166. SERIAL_ECHO_START;
  167. SERIAL_ECHOLNPGM("Stored settings retreived:");
  168. }
  169. else
  170. #endif
  171. {
  172. float tmp1[]=DEFAULT_AXIS_STEPS_PER_UNIT;
  173. float tmp2[]=DEFAULT_MAX_FEEDRATE;
  174. long tmp3[]=DEFAULT_MAX_ACCELERATION;
  175. for (short i=0;i<4;i++)
  176. {
  177. axis_steps_per_unit[i]=tmp1[i];
  178. max_feedrate[i]=tmp2[i];
  179. max_acceleration_units_per_sq_second[i]=tmp3[i];
  180. }
  181. acceleration=DEFAULT_ACCELERATION;
  182. retract_acceleration=DEFAULT_RETRACT_ACCELERATION;
  183. minimumfeedrate=DEFAULT_MINIMUMFEEDRATE;
  184. minsegmenttime=DEFAULT_MINSEGMENTTIME;
  185. mintravelfeedrate=DEFAULT_MINTRAVELFEEDRATE;
  186. max_xy_jerk=DEFAULT_XYJERK;
  187. max_z_jerk=DEFAULT_ZJERK;
  188. max_e_jerk=DEFAULT_EJERK;
  189. add_homeing[0] = add_homeing[1] = add_homeing[2] = 0;
  190. SERIAL_ECHO_START;
  191. SERIAL_ECHOLN("Using Default settings:");
  192. #ifdef ULTIPANEL
  193. plaPreheatHotendTemp = PLA_PREHEAT_HOTEND_TEMP;
  194. plaPreheatHPBTemp = PLA_PREHEAT_HPB_TEMP;
  195. plaPreheatFanSpeed = PLA_PREHEAT_FAN_SPEED;
  196. absPreheatHotendTemp = ABS_PREHEAT_HOTEND_TEMP;
  197. absPreheatHPBTemp = ABS_PREHEAT_HPB_TEMP;
  198. absPreheatFanSpeed = ABS_PREHEAT_FAN_SPEED;
  199. #endif
  200. }
  201. #ifdef EEPROM_CHITCHAT
  202. EEPROM_printSettings();
  203. #endif
  204. }
  205. #endif