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@@ -34,8 +34,8 @@ static bool EEPROM_writeData(uint8_t* pos, uint8_t* value, uint8_t size, const c
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#ifdef DEBUG_EEPROM_WRITE
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#ifdef DEBUG_EEPROM_WRITE
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printf_P(PSTR("EEPROM_WRITE_VAR addr=0x%04x size=0x%02x name=%s\n"), pos, size, name);
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printf_P(PSTR("EEPROM_WRITE_VAR addr=0x%04x size=0x%02x name=%s\n"), pos, size, name);
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#endif //DEBUG_EEPROM_WRITE
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#endif //DEBUG_EEPROM_WRITE
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- while (size--)
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- {
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+ while (size--)
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+ {
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eeprom_update_byte(pos, *value);
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eeprom_update_byte(pos, *value);
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if (eeprom_read_byte(pos) != *value) {
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if (eeprom_read_byte(pos) != *value) {
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@@ -43,9 +43,9 @@ static bool EEPROM_writeData(uint8_t* pos, uint8_t* value, uint8_t size, const c
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return false;
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return false;
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}
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}
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- pos++;
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- value++;
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- }
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+ pos++;
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+ value++;
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+ }
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return true;
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return true;
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}
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}
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@@ -89,8 +89,8 @@ void Config_StoreSettings()
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void Config_PrintSettings(uint8_t level)
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void Config_PrintSettings(uint8_t level)
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{ // Always have this function, even with EEPROM_SETTINGS disabled, the current values will be shown
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{ // Always have this function, even with EEPROM_SETTINGS disabled, the current values will be shown
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#ifdef TMC2130
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#ifdef TMC2130
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- printf_P(PSTR(
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- "%SSteps per unit:\n%S M92 X%.2f Y%.2f Z%.2f E%.2f\n"
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+ printf_P(PSTR(
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+ "%SSteps per unit:\n%S M92 X%.2f Y%.2f Z%.2f E%.2f\n"
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"%SUStep resolution: \n%S M350 X%d Y%d Z%d E%d\n"
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"%SUStep resolution: \n%S M350 X%d Y%d Z%d E%d\n"
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"%SMaximum feedrates - normal (mm/s):\n%S M203 X%.2f Y%.2f Z%.2f E%.2f\n"
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"%SMaximum feedrates - normal (mm/s):\n%S M203 X%.2f Y%.2f Z%.2f E%.2f\n"
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"%SMaximum feedrates - stealth (mm/s):\n%S M203 X%.2f Y%.2f Z%.2f E%.2f\n"
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"%SMaximum feedrates - stealth (mm/s):\n%S M203 X%.2f Y%.2f Z%.2f E%.2f\n"
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@@ -125,50 +125,54 @@ void Config_PrintSettings(uint8_t level)
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echomagic, echomagic, cs.minimumfeedrate, cs.mintravelfeedrate, cs.minsegmenttime, cs.max_jerk[X_AXIS], cs.max_jerk[Y_AXIS], cs.max_jerk[Z_AXIS], cs.max_jerk[E_AXIS],
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echomagic, echomagic, cs.minimumfeedrate, cs.mintravelfeedrate, cs.minsegmenttime, cs.max_jerk[X_AXIS], cs.max_jerk[Y_AXIS], cs.max_jerk[Z_AXIS], cs.max_jerk[E_AXIS],
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echomagic, echomagic, cs.add_homing[X_AXIS], cs.add_homing[Y_AXIS], cs.add_homing[Z_AXIS]
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echomagic, echomagic, cs.add_homing[X_AXIS], cs.add_homing[Y_AXIS], cs.add_homing[Z_AXIS]
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#endif //TMC2130
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#endif //TMC2130
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- );
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+ );
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#ifdef PIDTEMP
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#ifdef PIDTEMP
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- printf_P(PSTR("%SPID settings:\n%S M301 P%.2f I%.2f D%.2f\n"),
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- echomagic, echomagic, cs.Kp, unscalePID_i(cs.Ki), unscalePID_d(cs.Kd));
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+ printf_P(PSTR("%SPID settings:\n%S M301 P%.2f I%.2f D%.2f\n"),
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+ echomagic, echomagic, cs.Kp, unscalePID_i(cs.Ki), unscalePID_d(cs.Kd));
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#endif
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#endif
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#ifdef PIDTEMPBED
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#ifdef PIDTEMPBED
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- printf_P(PSTR("%SPID heatbed settings:\n%S M304 P%.2f I%.2f D%.2f\n"),
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- echomagic, echomagic, cs.bedKp, unscalePID_i(cs.bedKi), unscalePID_d(cs.bedKd));
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+ printf_P(PSTR("%SPID heatbed settings:\n%S M304 P%.2f I%.2f D%.2f\n"),
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+ echomagic, echomagic, cs.bedKp, unscalePID_i(cs.bedKi), unscalePID_d(cs.bedKd));
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#endif
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#endif
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#ifdef FWRETRACT
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#ifdef FWRETRACT
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- printf_P(PSTR(
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- "%SRetract: S=Length (mm) F:Speed (mm/m) Z: ZLift (mm)\n%S M207 S%.2f F%.2f Z%.2f\n"
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- "%SRecover: S=Extra length (mm) F:Speed (mm/m)\n%S M208 S%.2f F%.2f\n"
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- "%SAuto-Retract: S=0 to disable, 1 to interpret extrude-only moves as retracts or recoveries\n%S M209 S%d\n"
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- ),
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- echomagic, echomagic, cs.retract_length, cs.retract_feedrate*60, cs.retract_zlift,
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- echomagic, echomagic, cs.retract_recover_length, cs.retract_recover_feedrate*60,
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- echomagic, echomagic, (cs.autoretract_enabled ? 1 : 0)
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- );
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+ printf_P(PSTR(
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+ "%SRetract: S=Length (mm) F:Speed (mm/m) Z: ZLift (mm)\n%S M207 S%.2f F%.2f Z%.2f\n"
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+ "%SRecover: S=Extra length (mm) F:Speed (mm/m)\n%S M208 S%.2f F%.2f\n"
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+ "%SAuto-Retract: S=0 to disable, 1 to interpret extrude-only moves as retracts or recoveries\n%S M209 S%d\n"
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+ ),
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+ echomagic, echomagic, cs.retract_length, cs.retract_feedrate*60, cs.retract_zlift,
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+ echomagic, echomagic, cs.retract_recover_length, cs.retract_recover_feedrate*60,
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+ echomagic, echomagic, (cs.autoretract_enabled ? 1 : 0)
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+ );
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#if EXTRUDERS > 1
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#if EXTRUDERS > 1
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- printf_P(PSTR("%SMulti-extruder settings:\n%S Swap retract length (mm): %.2f\n%S Swap rec. addl. length (mm): %.2f\n"),
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- echomagic, echomagic, retract_length_swap, echomagic, retract_recover_length_swap);
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+ printf_P(PSTR("%SMulti-extruder settings:\n%S Swap retract length (mm): %.2f\n%S Swap rec. addl. length (mm): %.2f\n"),
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+ echomagic, echomagic, retract_length_swap, echomagic, retract_recover_length_swap);
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#endif
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#endif
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- if (cs.volumetric_enabled) {
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- printf_P(PSTR("%SFilament settings:\n%S M200 D%.2f\n"),
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- echomagic, echomagic, cs.filament_size[0]);
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+ if (cs.volumetric_enabled) {
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+ printf_P(PSTR("%SFilament settings:\n%S M200 D%.2f\n"),
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+ echomagic, echomagic, cs.filament_size[0]);
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#if EXTRUDERS > 1
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#if EXTRUDERS > 1
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- printf_P(PSTR("%S M200 T1 D%.2f\n"),
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- echomagic, echomagic, cs.filament_size[1]);
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+ printf_P(PSTR("%S M200 T1 D%.2f\n"),
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+ echomagic, echomagic, cs.filament_size[1]);
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#if EXTRUDERS > 2
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#if EXTRUDERS > 2
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- printf_P(PSTR("%S M200 T1 D%.2f\n"),
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- echomagic, echomagic, cs.filament_size[2]);
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+ printf_P(PSTR("%S M200 T1 D%.2f\n"),
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+ echomagic, echomagic, cs.filament_size[2]);
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#endif
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#endif
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#endif
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#endif
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} else {
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} else {
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printf_P(PSTR("%SFilament settings: Disabled\n"), echomagic);
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printf_P(PSTR("%SFilament settings: Disabled\n"), echomagic);
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}
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}
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#endif
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#endif
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- if (level >= 10) {
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+ if (level >= 10) {
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#ifdef LIN_ADVANCE
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#ifdef LIN_ADVANCE
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- printf_P(PSTR("%SLinear advance settings:%S M900 K%.2f\n"),
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+ printf_P(PSTR("%SLinear advance settings:%S M900 K%.2f\n"),
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echomagic, echomagic, extruder_advance_K);
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echomagic, echomagic, extruder_advance_K);
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#endif //LIN_ADVANCE
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#endif //LIN_ADVANCE
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- }
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+ }
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+ // Arc Interpolation Settings
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+ printf_P(PSTR(
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+ "%SArc Settings: P:Max length(mm) S:Min length (mm) N:Corrections R:Min segments F:Segments/sec.\n%S M214 P%.2f S%.2f N%d R%d F%d\n"),
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+ echomagic, echomagic, cs.mm_per_arc_segment, cs.min_mm_per_arc_segment, cs.n_arc_correction, cs.min_arc_segments, cs.arc_segments_per_sec);
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}
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}
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#endif
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#endif
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@@ -184,7 +188,7 @@ static_assert (false, "zprobe_zoffset was not initialized in printers in field t
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"0.0, if this is not acceptable, increment EEPROM_VERSION to force use default_conf");
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"0.0, if this is not acceptable, increment EEPROM_VERSION to force use default_conf");
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#endif
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#endif
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-static_assert (sizeof(M500_conf) == 196, "sizeof(M500_conf) has changed, ensure that EEPROM_VERSION has been incremented, "
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+static_assert (sizeof(M500_conf) == 209, "sizeof(M500_conf) has changed, ensure that EEPROM_VERSION has been incremented, "
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"or if you added members in the end of struct, ensure that historically uninitialized values will be initialized."
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"or if you added members in the end of struct, ensure that historically uninitialized values will be initialized."
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"If this is caused by change to more then 8bit processor, decide whether make this struct packed to save EEPROM,"
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"If this is caused by change to more then 8bit processor, decide whether make this struct packed to save EEPROM,"
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"leave as it is to keep fast code, or reorder struct members to pack more tightly.");
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"leave as it is to keep fast code, or reorder struct members to pack more tightly.");
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@@ -233,6 +237,11 @@ static const M500_conf default_conf PROGMEM =
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{16,16,16,16},
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{16,16,16,16},
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#endif
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#endif
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DEFAULT_TRAVEL_ACCELERATION,
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DEFAULT_TRAVEL_ACCELERATION,
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+ DEFAULT_MM_PER_ARC_SEGMENT,
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+ DEFAULT_MIN_MM_PER_ARC_SEGMENT,
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+ DEFAULT_N_ARC_CORRECTION,
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+ DEFAULT_MIN_ARC_SEGMENTS,
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+ DEFAULT_ARC_SEGMENTS_PER_SEC
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};
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};
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@@ -252,7 +261,7 @@ static bool is_uninitialized(void* addr, uint8_t len)
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//! @retval false Failed. Default settings has been retrieved, because of older version or corrupted data.
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//! @retval false Failed. Default settings has been retrieved, because of older version or corrupted data.
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bool Config_RetrieveSettings()
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bool Config_RetrieveSettings()
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{
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{
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- bool previous_settings_retrieved = true;
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+ bool previous_settings_retrieved = true;
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char ver[4]=EEPROM_VERSION;
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char ver[4]=EEPROM_VERSION;
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EEPROM_readData(reinterpret_cast<uint8_t*>(EEPROM_M500_base->version), reinterpret_cast<uint8_t*>(cs.version), sizeof(cs.version), "cs.version"); //read stored version
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EEPROM_readData(reinterpret_cast<uint8_t*>(EEPROM_M500_base->version), reinterpret_cast<uint8_t*>(cs.version), sizeof(cs.version), "cs.version"); //read stored version
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// SERIAL_ECHOLN("Version: [" << ver << "] Stored version: [" << cs.version << "]");
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// SERIAL_ECHOLN("Version: [" << ver << "] Stored version: [" << cs.version << "]");
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@@ -262,7 +271,7 @@ bool Config_RetrieveSettings()
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EEPROM_readData(reinterpret_cast<uint8_t*>(EEPROM_M500_base), reinterpret_cast<uint8_t*>(&cs), sizeof(cs), "cs");
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EEPROM_readData(reinterpret_cast<uint8_t*>(EEPROM_M500_base), reinterpret_cast<uint8_t*>(&cs), sizeof(cs), "cs");
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calculate_extruder_multipliers();
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calculate_extruder_multipliers();
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- //if max_feedrate_silent and max_acceleration_units_per_sq_second_silent were never stored to eeprom, use default values:
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+ //if max_feedrate_silent and max_acceleration_units_per_sq_second_silent were never stored to eeprom, use default values:
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for (uint8_t i = 0; i < (sizeof(cs.max_feedrate_silent)/sizeof(cs.max_feedrate_silent[0])); ++i)
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for (uint8_t i = 0; i < (sizeof(cs.max_feedrate_silent)/sizeof(cs.max_feedrate_silent[0])); ++i)
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{
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{
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const uint32_t erased = 0xffffffff;
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const uint32_t erased = 0xffffffff;
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@@ -273,29 +282,36 @@ bool Config_RetrieveSettings()
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memcpy_P(&cs.max_acceleration_units_per_sq_second_silent[i],&default_conf.max_acceleration_units_per_sq_second_silent[i],sizeof(cs.max_acceleration_units_per_sq_second_silent[i]));
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memcpy_P(&cs.max_acceleration_units_per_sq_second_silent[i],&default_conf.max_acceleration_units_per_sq_second_silent[i],sizeof(cs.max_acceleration_units_per_sq_second_silent[i]));
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}
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}
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}
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}
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+ // Initialize arc interpolation settings if they are not already
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+ if (is_uninitialized(&cs.mm_per_arc_segment, sizeof(cs.mm_per_arc_segment))) cs.mm_per_arc_segment = default_conf.mm_per_arc_segment;
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+ if (is_uninitialized(&cs.min_mm_per_arc_segment, sizeof(cs.min_mm_per_arc_segment))) cs.min_mm_per_arc_segment = default_conf.min_mm_per_arc_segment;
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+ if (is_uninitialized(&cs.n_arc_correction, sizeof(cs.n_arc_correction))) cs.n_arc_correction = default_conf.n_arc_correction;
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+ if (is_uninitialized(&cs.min_arc_segments, sizeof(cs.min_arc_segments))) cs.min_arc_segments = default_conf.min_arc_segments;
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+ if (is_uninitialized(&cs.arc_segments_per_sec, sizeof(cs.arc_segments_per_sec))) cs.arc_segments_per_sec = default_conf.arc_segments_per_sec;
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+
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#ifdef TMC2130
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#ifdef TMC2130
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- for (uint8_t j = X_AXIS; j <= Y_AXIS; j++)
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- {
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- if (cs.max_feedrate_normal[j] > NORMAL_MAX_FEEDRATE_XY)
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- cs.max_feedrate_normal[j] = NORMAL_MAX_FEEDRATE_XY;
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- if (cs.max_feedrate_silent[j] > SILENT_MAX_FEEDRATE_XY)
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- cs.max_feedrate_silent[j] = SILENT_MAX_FEEDRATE_XY;
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- if (cs.max_acceleration_units_per_sq_second_normal[j] > NORMAL_MAX_ACCEL_XY)
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- cs.max_acceleration_units_per_sq_second_normal[j] = NORMAL_MAX_ACCEL_XY;
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- if (cs.max_acceleration_units_per_sq_second_silent[j] > SILENT_MAX_ACCEL_XY)
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- cs.max_acceleration_units_per_sq_second_silent[j] = SILENT_MAX_ACCEL_XY;
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- }
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+ for (uint8_t j = X_AXIS; j <= Y_AXIS; j++)
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+ {
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+ if (cs.max_feedrate_normal[j] > NORMAL_MAX_FEEDRATE_XY)
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+ cs.max_feedrate_normal[j] = NORMAL_MAX_FEEDRATE_XY;
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+ if (cs.max_feedrate_silent[j] > SILENT_MAX_FEEDRATE_XY)
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+ cs.max_feedrate_silent[j] = SILENT_MAX_FEEDRATE_XY;
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+ if (cs.max_acceleration_units_per_sq_second_normal[j] > NORMAL_MAX_ACCEL_XY)
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+ cs.max_acceleration_units_per_sq_second_normal[j] = NORMAL_MAX_ACCEL_XY;
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+ if (cs.max_acceleration_units_per_sq_second_silent[j] > SILENT_MAX_ACCEL_XY)
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+ cs.max_acceleration_units_per_sq_second_silent[j] = SILENT_MAX_ACCEL_XY;
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+ }
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- if(cs.axis_ustep_resolution[X_AXIS] == 0xff){ cs.axis_ustep_resolution[X_AXIS] = TMC2130_USTEPS_XY; }
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- if(cs.axis_ustep_resolution[Y_AXIS] == 0xff){ cs.axis_ustep_resolution[Y_AXIS] = TMC2130_USTEPS_XY; }
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- if(cs.axis_ustep_resolution[Z_AXIS] == 0xff){ cs.axis_ustep_resolution[Z_AXIS] = TMC2130_USTEPS_Z; }
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- if(cs.axis_ustep_resolution[E_AXIS] == 0xff){ cs.axis_ustep_resolution[E_AXIS] = TMC2130_USTEPS_E; }
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-
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- tmc2130_set_res(X_AXIS, cs.axis_ustep_resolution[X_AXIS]);
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- tmc2130_set_res(Y_AXIS, cs.axis_ustep_resolution[Y_AXIS]);
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- tmc2130_set_res(Z_AXIS, cs.axis_ustep_resolution[Z_AXIS]);
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- tmc2130_set_res(E_AXIS, cs.axis_ustep_resolution[E_AXIS]);
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+ if(cs.axis_ustep_resolution[X_AXIS] == 0xff){ cs.axis_ustep_resolution[X_AXIS] = TMC2130_USTEPS_XY; }
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+ if(cs.axis_ustep_resolution[Y_AXIS] == 0xff){ cs.axis_ustep_resolution[Y_AXIS] = TMC2130_USTEPS_XY; }
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+ if(cs.axis_ustep_resolution[Z_AXIS] == 0xff){ cs.axis_ustep_resolution[Z_AXIS] = TMC2130_USTEPS_Z; }
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+ if(cs.axis_ustep_resolution[E_AXIS] == 0xff){ cs.axis_ustep_resolution[E_AXIS] = TMC2130_USTEPS_E; }
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+
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+ tmc2130_set_res(X_AXIS, cs.axis_ustep_resolution[X_AXIS]);
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+ tmc2130_set_res(Y_AXIS, cs.axis_ustep_resolution[Y_AXIS]);
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+ tmc2130_set_res(Z_AXIS, cs.axis_ustep_resolution[Z_AXIS]);
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+ tmc2130_set_res(E_AXIS, cs.axis_ustep_resolution[E_AXIS]);
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#endif //TMC2130
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#endif //TMC2130
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if(is_uninitialized(&cs.travel_acceleration, sizeof(cs.travel_acceleration)))
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if(is_uninitialized(&cs.travel_acceleration, sizeof(cs.travel_acceleration)))
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@@ -303,27 +319,27 @@ bool Config_RetrieveSettings()
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reset_acceleration_rates();
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reset_acceleration_rates();
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- // Call updatePID (similar to when we have processed M301)
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- updatePID();
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+ // Call updatePID (similar to when we have processed M301)
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+ updatePID();
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SERIAL_ECHO_START;
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SERIAL_ECHO_START;
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SERIAL_ECHOLNPGM("Stored settings retrieved");
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SERIAL_ECHOLNPGM("Stored settings retrieved");
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}
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}
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else
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else
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{
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{
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Config_ResetDefault();
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Config_ResetDefault();
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- //Return false to inform user that eeprom version was changed and firmware is using default hardcoded settings now.
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- //In case that storing to eeprom was not used yet, do not inform user that hardcoded settings are used.
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- if (eeprom_read_byte(reinterpret_cast<uint8_t*>(&(EEPROM_M500_base->version[0]))) != 0xFF ||
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- eeprom_read_byte(reinterpret_cast<uint8_t*>(&(EEPROM_M500_base->version[1]))) != 0xFF ||
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- eeprom_read_byte(reinterpret_cast<uint8_t*>(&(EEPROM_M500_base->version[2]))) != 0xFF)
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- {
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- previous_settings_retrieved = false;
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- }
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+ //Return false to inform user that eeprom version was changed and firmware is using default hardcoded settings now.
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+ //In case that storing to eeprom was not used yet, do not inform user that hardcoded settings are used.
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+ if (eeprom_read_byte(reinterpret_cast<uint8_t*>(&(EEPROM_M500_base->version[0]))) != 0xFF ||
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+ eeprom_read_byte(reinterpret_cast<uint8_t*>(&(EEPROM_M500_base->version[1]))) != 0xFF ||
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+ eeprom_read_byte(reinterpret_cast<uint8_t*>(&(EEPROM_M500_base->version[2]))) != 0xFF)
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+ {
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+ previous_settings_retrieved = false;
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+ }
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}
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}
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#ifdef EEPROM_CHITCHAT
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#ifdef EEPROM_CHITCHAT
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Config_PrintSettings();
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Config_PrintSettings();
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#endif
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#endif
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- return previous_settings_retrieved;
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+ return previous_settings_retrieved;
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}
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}
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#endif
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#endif
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@@ -331,16 +347,17 @@ void Config_ResetDefault()
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{
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{
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memcpy_P(&cs,&default_conf, sizeof(cs));
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memcpy_P(&cs,&default_conf, sizeof(cs));
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- // steps per sq second need to be updated to agree with the units per sq second
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+ // steps per sq second need to be updated to agree with the units per sq second
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reset_acceleration_rates();
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reset_acceleration_rates();
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#ifdef PIDTEMP
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#ifdef PIDTEMP
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updatePID();
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updatePID();
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#endif//PIDTEMP
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#endif//PIDTEMP
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- calculate_extruder_multipliers();
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+ calculate_extruder_multipliers();
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SERIAL_ECHO_START;
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SERIAL_ECHO_START;
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SERIAL_ECHOLNPGM("Hardcoded Default Settings Loaded");
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SERIAL_ECHOLNPGM("Hardcoded Default Settings Loaded");
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}
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}
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+
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