My Marlin configs for Fabrikator Mini and CTC i3 Pro B
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

EEPROM.h 5.2KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123
  1. #include "planner.h"
  2. #include "temperature.h"
  3. //======================================================================================
  4. template <class T> int EEPROM_writeAnything(int &ee, const T& value)
  5. {
  6. const byte* p = (const byte*)(const void*)&value;
  7. int i;
  8. for (i = 0; i < sizeof(value); i++)
  9. EEPROM.write(ee++, *p++);
  10. return i;
  11. }
  12. //======================================================================================
  13. template <class T> int EEPROM_readAnything(int &ee, T& value)
  14. {
  15. byte* p = (byte*)(void*)&value;
  16. int i;
  17. for (i = 0; i < sizeof(value); i++)
  18. *p++ = EEPROM.read(ee++);
  19. return i;
  20. }
  21. //======================================================================================
  22. #define EEPROM_OFFSET 100
  23. #define EEPROM_VERSION "V04" // IMPORTANT: Whenever there are changes made to the variables stored in EEPROM
  24. // in the functions below, also increment the version number. This makes sure that
  25. // the default values are used whenever there is a change to the data, to prevent
  26. // wrong data being written to the variables.
  27. // ALSO: always make sure the variables in the Store and retrieve sections are in the same order.
  28. void StoreSettings() {
  29. char ver[4]= "000";
  30. int i=EEPROM_OFFSET;
  31. EEPROM_writeAnything(i,ver); // invalidate data first
  32. EEPROM_writeAnything(i,axis_steps_per_unit);
  33. EEPROM_writeAnything(i,max_feedrate);
  34. EEPROM_writeAnything(i,max_acceleration_units_per_sq_second);
  35. EEPROM_writeAnything(i,acceleration);
  36. EEPROM_writeAnything(i,retract_acceleration);
  37. EEPROM_writeAnything(i,minimumfeedrate);
  38. EEPROM_writeAnything(i,mintravelfeedrate);
  39. EEPROM_writeAnything(i,minsegmenttime);
  40. EEPROM_writeAnything(i,max_xy_jerk);
  41. EEPROM_writeAnything(i,max_z_jerk);
  42. #ifdef PIDTEMP
  43. EEPROM_writeAnything(i,Kp);
  44. EEPROM_writeAnything(i,Ki);
  45. EEPROM_writeAnything(i,Kd);
  46. #else
  47. EEPROM_writeAnything(i,3000);
  48. EEPROM_writeAnything(i,0);
  49. EEPROM_writeAnything(i,0);
  50. #endif
  51. char ver2[4]=EEPROM_VERSION;
  52. i=EEPROM_OFFSET;
  53. EEPROM_writeAnything(i,ver2); // validate data
  54. ECHOLN("Settings Stored");
  55. }
  56. void RetrieveSettings(bool def=false){ // if def=true, the default values will be used
  57. int i=EEPROM_OFFSET;
  58. char stored_ver[4];
  59. char ver[4]=EEPROM_VERSION;
  60. EEPROM_readAnything(i,stored_ver); //read stored version
  61. // ECHOLN("Version: [" << ver << "] Stored version: [" << stored_ver << "]");
  62. if ((!def)&&(strncmp(ver,stored_ver,3)==0)) { // version number match
  63. EEPROM_readAnything(i,axis_steps_per_unit);
  64. EEPROM_readAnything(i,max_feedrate);
  65. EEPROM_readAnything(i,max_acceleration_units_per_sq_second);
  66. EEPROM_readAnything(i,acceleration);
  67. EEPROM_readAnything(i,retract_acceleration);
  68. EEPROM_readAnything(i,minimumfeedrate);
  69. EEPROM_readAnything(i,mintravelfeedrate);
  70. EEPROM_readAnything(i,minsegmenttime);
  71. EEPROM_readAnything(i,max_xy_jerk);
  72. EEPROM_readAnything(i,max_z_jerk);
  73. #ifndef PIDTEMP
  74. float Kp,Ki,Kd;
  75. #endif
  76. EEPROM_readAnything(i,Kp);
  77. EEPROM_readAnything(i,Ki);
  78. EEPROM_readAnything(i,Kd);
  79. ECHOLN("Stored settings retreived:");
  80. }
  81. else {
  82. float tmp1[]=DEFAULT_AXIS_STEPS_PER_UNIT;
  83. float tmp2[]=DEFAULT_MAX_FEEDRATE;
  84. long tmp3[]=DEFAULT_MAX_ACCELERATION;
  85. for (int i=0;i<4;i++) {
  86. axis_steps_per_unit[i]=tmp1[i];
  87. max_feedrate[i]=tmp2[i];
  88. max_acceleration_units_per_sq_second[i]=tmp3[i];
  89. }
  90. acceleration=DEFAULT_ACCELERATION;
  91. retract_acceleration=DEFAULT_RETRACT_ACCELERATION;
  92. minimumfeedrate=DEFAULT_MINIMUMFEEDRATE;
  93. minsegmenttime=DEFAULT_MINSEGMENTTIME;
  94. mintravelfeedrate=DEFAULT_MINTRAVELFEEDRATE;
  95. max_xy_jerk=DEFAULT_XYJERK;
  96. max_z_jerk=DEFAULT_ZJERK;
  97. ECHOLN("Using Default settings:");
  98. }
  99. ECHOLN("Steps per unit:");
  100. ECHOLN(" M92 X" <<_FLOAT(axis_steps_per_unit[0],3) << " Y" << _FLOAT(axis_steps_per_unit[1],3) << " Z" << _FLOAT(axis_steps_per_unit[2],3) << " E" << _FLOAT(axis_steps_per_unit[3],3));
  101. ECHOLN("Maximum feedrates (mm/s):");
  102. ECHOLN(" M203 X" <<_FLOAT(max_feedrate[0]/60,2)<<" Y" << _FLOAT(max_feedrate[1]/60,2) << " Z" << _FLOAT(max_feedrate[2]/60,2) << " E" << _FLOAT(max_feedrate[3]/60,2));
  103. ECHOLN("Maximum Acceleration (mm/s2):");
  104. ECHOLN(" M201 X" <<_FLOAT(max_acceleration_units_per_sq_second[0],0) << " Y" << _FLOAT(max_acceleration_units_per_sq_second[1],0) << " Z" << _FLOAT(max_acceleration_units_per_sq_second[2],0) << " E" << _FLOAT(max_acceleration_units_per_sq_second[3],0));
  105. ECHOLN("Acceleration: S=acceleration, T=retract acceleration");
  106. ECHOLN(" M204 S" <<_FLOAT(acceleration,2) << " T" << _FLOAT(retract_acceleration,2));
  107. ECHOLN("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)");
  108. ECHOLN(" M205 S" <<_FLOAT(minimumfeedrate/60,2) << " T" << _FLOAT(mintravelfeedrate/60,2) << " B" << _FLOAT(minsegmenttime,2) << " X" << _FLOAT(max_xy_jerk/60,2) << " Z" << _FLOAT(max_z_jerk/60,2));
  109. #ifdef PIDTEMP
  110. ECHOLN("PID settings:");
  111. ECHOLN(" M301 P" << _FLOAT(Kp,3) << " I" << _FLOAT(Ki,3) << " D" << _FLOAT(Kd,3));
  112. #endif
  113. }