M303 thermal runaway protection
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@ -217,7 +217,7 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS],
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#if HAS_PID_HEATING
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void Temperature::PID_autotune(float temp, int hotend, int ncycles, bool set_result/*=false*/) {
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void Temperature::PID_autotune(const float temp, const int8_t hotend, const int8_t ncycles, const bool set_result/*=false*/) {
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float input = 0.0;
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int cycles = 0;
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bool heating = true;
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@ -226,27 +226,59 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS],
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long t_high = 0, t_low = 0;
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long bias, d;
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float Ku, Tu;
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float workKp = 0, workKi = 0, workKd = 0;
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float max = 0, min = 10000;
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float Ku, Tu,
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workKp = 0, workKi = 0, workKd = 0,
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max = 0, min = 10000;
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#if WATCH_THE_BED || WATCH_HOTENDS
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const float watch_temp_target = temp -
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#if ENABLED(THERMAL_PROTECTION_BED) && ENABLED(PIDTEMPBED) && ENABLED(THERMAL_PROTECTION_HOTENDS) && ENABLED(PIDTEMP)
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(hotend < 0 ? (WATCH_BED_TEMP_INCREASE + TEMP_BED_HYSTERESIS + 1) : (WATCH_TEMP_INCREASE + TEMP_HYSTERESIS + 1))
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#elif ENABLED(THERMAL_PROTECTION_BED) && ENABLED(PIDTEMPBED)
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(WATCH_BED_TEMP_INCREASE + TEMP_BED_HYSTERESIS + 1)
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#else
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(WATCH_TEMP_INCREASE + TEMP_HYSTERESIS + 1)
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#endif
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;
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const int8_t watch_temp_period =
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#if ENABLED(THERMAL_PROTECTION_BED) && ENABLED(PIDTEMPBED) && ENABLED(THERMAL_PROTECTION_HOTENDS) && ENABLED(PIDTEMP)
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hotend < 0 ? temp - THERMAL_PROTECTION_BED_PERIOD : THERMAL_PROTECTION_PERIOD
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#elif ENABLED(THERMAL_PROTECTION_BED) && ENABLED(PIDTEMPBED)
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THERMAL_PROTECTION_BED_PERIOD
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#else
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THERMAL_PROTECTION_PERIOD
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#endif
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;
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const int8_t hysteresis =
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#if ENABLED(THERMAL_PROTECTION_BED) && ENABLED(PIDTEMPBED) && ENABLED(THERMAL_PROTECTION_HOTENDS) && ENABLED(PIDTEMP)
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hotend < 0 ? TEMP_BED_HYSTERESIS : TEMP_HYSTERESIS
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#elif ENABLED(THERMAL_PROTECTION_BED) && ENABLED(PIDTEMPBED)
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TEMP_BED_HYSTERESIS
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#else
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TEMP_HYSTERESIS
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#endif
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;
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millis_t temp_change_ms = next_temp_ms + watch_temp_period * 1000UL;
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float next_watch_temp = 0.0;
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bool heated = false;
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#endif
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#if HAS_AUTO_FAN
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next_auto_fan_check_ms = next_temp_ms + 2500UL;
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#endif
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if (hotend >=
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#if ENABLED(PIDTEMP)
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HOTENDS
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#else
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0
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#endif
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|| hotend <
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#if ENABLED(PIDTEMPBED)
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-1
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#else
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0
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#endif
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) {
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#if ENABLED(PIDTEMP)
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#define _TOP_HOTEND HOTENDS - 1
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#else
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#define _TOP_HOTEND -1
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#endif
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#if ENABLED(PIDTEMPBED)
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#define _BOT_HOTEND -1
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#else
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#define _BOT_HOTEND 0
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#endif
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if (!WITHIN(hotend, _BOT_HOTEND, _TOP_HOTEND)) {
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SERIAL_ECHOLN(MSG_PID_BAD_EXTRUDER_NUM);
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return;
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}
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@ -332,7 +364,7 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS],
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;
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bias += (d * (t_high - t_low)) / (t_low + t_high);
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bias = constrain(bias, 20, max_pow - 20);
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d = (bias > max_pow / 2) ? max_pow - 1 - bias : bias;
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d = (bias > max_pow >> 1) ? max_pow - 1 - bias : bias;
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SERIAL_PROTOCOLPAIR(MSG_BIAS, bias);
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SERIAL_PROTOCOLPAIR(MSG_D, d);
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@ -396,6 +428,16 @@ uint8_t Temperature::soft_pwm_amount[HOTENDS],
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#endif
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next_temp_ms = ms + 2000UL;
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#if WATCH_THE_BED || WATCH_HOTENDS
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if (!heated && input > next_watch_temp) {
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if (input > watch_temp_target) heated = true;
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next_watch_temp = input + hysteresis;
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temp_change_ms = ms + watch_temp_period * 1000UL;
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}
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else if ((!heated && ELAPSED(ms, temp_change_ms)) || (heated && input < temp - MAX_OVERSHOOT_PID_AUTOTUNE))
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_temp_error(hotend, PSTR(MSG_T_THERMAL_RUNAWAY), PSTR(MSG_THERMAL_RUNAWAY));
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#endif
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} // every 2 seconds
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// Timeout after 20 minutes since the last undershoot/overshoot cycle
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if (((ms - t1) + (ms - t2)) > (20L * 60L * 1000L)) {
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@ -429,7 +429,7 @@ class Temperature {
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* Perform auto-tuning for hotend or bed in response to M303
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*/
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#if HAS_PID_HEATING
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static void PID_autotune(float temp, int hotend, int ncycles, bool set_result=false);
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static void PID_autotune(const float temp, const int8_t hotend, const int8_t ncycles, const bool set_result=false);
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#endif
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/**
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