🧑💻 Auto Fan / Cooler Fan updates (#25554)
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@ -2572,10 +2572,21 @@
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#if ANY(HAS_AUTO_FAN_0, HAS_AUTO_FAN_1, HAS_AUTO_FAN_2, HAS_AUTO_FAN_3, HAS_AUTO_FAN_4, HAS_AUTO_FAN_5, HAS_AUTO_FAN_6, HAS_AUTO_FAN_7, HAS_AUTO_CHAMBER_FAN, HAS_AUTO_COOLER_FAN)
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#define HAS_AUTO_FAN 1
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#endif
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#define _FANOVERLAP(A,B) (A##_AUTO_FAN_PIN == E##B##_AUTO_FAN_PIN)
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#if HAS_AUTO_FAN && (_FANOVERLAP(CHAMBER,0) || _FANOVERLAP(CHAMBER,1) || _FANOVERLAP(CHAMBER,2) || _FANOVERLAP(CHAMBER,3) || _FANOVERLAP(CHAMBER,4) || _FANOVERLAP(CHAMBER,5) || _FANOVERLAP(CHAMBER,6) || _FANOVERLAP(CHAMBER,7))
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#define _FANOVERLAP(I,T) (T##_AUTO_FAN_PIN == E##I##_AUTO_FAN_PIN)
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#if HAS_AUTO_CHAMBER_FAN
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#define _CHFANOVERLAP(I) || _FANOVERLAP(I,CHAMBER)
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#if (0 REPEAT(8, _CHFANOVERLAP))
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#define AUTO_CHAMBER_IS_E 1
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#endif
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#undef _CHFANOVERLAP
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#endif
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#if HAS_AUTO_COOLER_FAN
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#define _COFANOVERLAP(I) || _FANOVERLAP(I,COOLER)
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#if (0 REPEAT(8, _COFANOVERLAP))
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#define AUTO_COOLER_IS_E 1
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#endif
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#undef _COFANOVERLAP
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#endif
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#endif
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// Fans check
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@ -2620,6 +2631,9 @@
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#if !HAS_AUTO_CHAMBER_FAN || AUTO_CHAMBER_IS_E
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#undef AUTO_POWER_CHAMBER_FAN
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#endif
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#if !HAS_AUTO_COOLER_FAN || AUTO_COOLER_IS_E
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#undef AUTO_POWER_COOLER_FAN
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#endif
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// Print Cooling fans (limit)
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#ifdef NUM_M106_FANS
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@ -3043,24 +3043,9 @@ static_assert(X_MAX_LENGTH >= X_BED_SIZE, "Movement bounds (X_MIN_POS, X_MAX_POS
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* Auto Fan check for PWM pins
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*/
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#if HAS_AUTO_FAN && EXTRUDER_AUTO_FAN_SPEED != 255
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#define AF_ERR_SUFF "_AUTO_FAN_PIN is not a PWM pin. Set EXTRUDER_AUTO_FAN_SPEED to 255."
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#if HAS_AUTO_FAN_0
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static_assert(_TEST_PWM(E0_AUTO_FAN_PIN), "E0" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_1
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static_assert(_TEST_PWM(E1_AUTO_FAN_PIN), "E1" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_2
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static_assert(_TEST_PWM(E2_AUTO_FAN_PIN), "E2" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_3
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static_assert(_TEST_PWM(E3_AUTO_FAN_PIN), "E3" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_4
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static_assert(_TEST_PWM(E4_AUTO_FAN_PIN), "E4" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_5
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static_assert(_TEST_PWM(E5_AUTO_FAN_PIN), "E5" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_6
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static_assert(_TEST_PWM(E6_AUTO_FAN_PIN), "E6" AF_ERR_SUFF);
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#elif HAS_AUTO_FAN_7
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static_assert(_TEST_PWM(E7_AUTO_FAN_PIN), "E7" AF_ERR_SUFF);
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#endif
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#define AF_ASSERT(N) OPTCODE(HAS_AUTO_FAN_##N, static_assert(_TEST_PWM(E##N##_AUTO_FAN_PIN), "E" STRINGIFY(N) "_AUTO_FAN_PIN is not a PWM pin. Set EXTRUDER_AUTO_FAN_SPEED to 255."))
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REPEAT(8, AF_ASSERT)
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#undef AF_ASSERT
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#endif
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/**
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@ -1194,45 +1194,56 @@ int16_t Temperature::getHeaterPower(const heater_id_t heater_id) {
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}
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}
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#define _EFANOVERLAP(A,B) _FANOVERLAP(E##A,B)
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#if HAS_AUTO_FAN
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#define _EFANOVERLAP(I,N) ((I != N) && _FANOVERLAP(I,E##N))
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#if EXTRUDER_AUTO_FAN_SPEED != 255
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#define INIT_E_AUTO_FAN_PIN(P) do{ if (P == FAN1_PIN || P == FAN2_PIN) { SET_PWM(P); SET_FAST_PWM_FREQ(P); } else SET_OUTPUT(P); }while(0)
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#define INIT_E_AUTO_FAN_PIN(P) do{ if (PWM_PIN(P)) { SET_PWM(P); SET_FAST_PWM_FREQ(P); } else SET_OUTPUT(P); }while(0)
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#else
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#define INIT_E_AUTO_FAN_PIN(P) SET_OUTPUT(P)
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#endif
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#if CHAMBER_AUTO_FAN_SPEED != 255
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#define INIT_CHAMBER_AUTO_FAN_PIN(P) do{ if (P == FAN1_PIN || P == FAN2_PIN) { SET_PWM(P); SET_FAST_PWM_FREQ(P); } else SET_OUTPUT(P); }while(0)
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#define INIT_CHAMBER_AUTO_FAN_PIN(P) do{ if (PWM_PIN(P)) { SET_PWM(P); SET_FAST_PWM_FREQ(P); } else SET_OUTPUT(P); }while(0)
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#else
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#define INIT_CHAMBER_AUTO_FAN_PIN(P) SET_OUTPUT(P)
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#endif
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#if COOLER_AUTO_FAN_SPEED != 255
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#define INIT_COOLER_AUTO_FAN_PIN(P) do{ if (PWM_PIN(P)) { SET_PWM(P); SET_FAST_PWM_FREQ(P); } else SET_OUTPUT(P); }while(0)
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#else
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#define INIT_COOLER_AUTO_FAN_PIN(P) SET_OUTPUT(P)
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#endif
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#ifndef CHAMBER_FAN_INDEX
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#define CHAMBER_FAN_INDEX HOTENDS
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#endif
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void Temperature::update_autofans() {
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#define _EFAN(B,A) _EFANOVERLAP(A,B) ? B :
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#define _EFAN(I,N) _EFANOVERLAP(I,N) ? I :
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static const uint8_t fanBit[] PROGMEM = {
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0
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#if HAS_MULTI_HOTEND
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#define _NEXT_FAN(N) , REPEAT2(N,_EFAN,N) N
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RREPEAT_S(1, HOTENDS, _NEXT_FAN)
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#endif
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#define _NFAN HOTENDS
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#if HAS_AUTO_CHAMBER_FAN
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#define _CFAN(B) _FANOVERLAP(CHAMBER,B) ? B :
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, REPEAT(HOTENDS,_CFAN) (HOTENDS)
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#define _CHFAN(I) _FANOVERLAP(I,CHAMBER) ? I :
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, (REPEAT(HOTENDS,_CHFAN) (_NFAN))
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#undef _NFAN
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#define _NFAN INCREMENT(HOTENDS)
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#endif
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#if HAS_AUTO_COOLER_FAN
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#define _COFAN(I) _FANOVERLAP(I,COOLER) ? I :
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, (REPEAT(HOTENDS,_COFAN) (_NFAN))
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#endif
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};
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uint8_t fanState = 0;
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HOTEND_LOOP() {
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if (temp_hotend[e].celsius >= EXTRUDER_AUTO_FAN_TEMPERATURE) {
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if (temp_hotend[e].celsius >= EXTRUDER_AUTO_FAN_TEMPERATURE)
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SBI(fanState, pgm_read_byte(&fanBit[e]));
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}
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}
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#if HAS_AUTO_CHAMBER_FAN
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if (temp_chamber.celsius >= CHAMBER_AUTO_FAN_TEMPERATURE)
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@ -1262,6 +1273,11 @@ int16_t Temperature::getHeaterPower(const heater_id_t heater_id) {
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chamberfan_speed = fan_on ? CHAMBER_AUTO_FAN_SPEED : 0;
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break;
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#endif
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#if ENABLED(AUTO_POWER_COOLER_FAN)
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case COOLER_FAN_INDEX:
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coolerfan_speed = fan_on ? COOLER_AUTO_FAN_SPEED : 0;
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break;
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#endif
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default:
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#if EITHER(AUTO_POWER_E_FANS, HAS_FANCHECK)
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autofan_speed[realFan] = fan_on ? EXTRUDER_AUTO_FAN_SPEED : 0;
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@ -1275,35 +1291,16 @@ int16_t Temperature::getHeaterPower(const heater_id_t heater_id) {
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#define _AUTOFAN_SPEED() EXTRUDER_AUTO_FAN_SPEED
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#endif
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#define _AUTOFAN_CASE(N) case N: _UPDATE_AUTO_FAN(E##N, fan_on, _AUTOFAN_SPEED()); break
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#define AUTOFAN_CASE(N) OPTCODE(HAS_AUTO_FAN_##N, _AUTOFAN_CASE(N))
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switch (f) {
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#if HAS_AUTO_FAN_0
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_AUTOFAN_CASE(0);
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#endif
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#if HAS_AUTO_FAN_1
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_AUTOFAN_CASE(1);
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#endif
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#if HAS_AUTO_FAN_2
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_AUTOFAN_CASE(2);
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#endif
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#if HAS_AUTO_FAN_3
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_AUTOFAN_CASE(3);
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#endif
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#if HAS_AUTO_FAN_4
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_AUTOFAN_CASE(4);
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#endif
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#if HAS_AUTO_FAN_5
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_AUTOFAN_CASE(5);
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#endif
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#if HAS_AUTO_FAN_6
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_AUTOFAN_CASE(6);
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#endif
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#if HAS_AUTO_FAN_7
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_AUTOFAN_CASE(7);
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#endif
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REPEAT(8, AUTOFAN_CASE)
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#if HAS_AUTO_CHAMBER_FAN && !AUTO_CHAMBER_IS_E
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case CHAMBER_FAN_INDEX: _UPDATE_AUTO_FAN(CHAMBER, fan_on, CHAMBER_AUTO_FAN_SPEED); break;
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#endif
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#if HAS_AUTO_COOLER_FAN && !AUTO_COOLER_IS_E
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case COOLER_FAN_INDEX: _UPDATE_AUTO_FAN(COOLER, fan_on, COOLER_AUTO_FAN_SPEED); break;
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#endif
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}
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SBI(fanDone, realFan);
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}
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@ -2737,33 +2734,39 @@ void Temperature::init() {
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HAL_timer_start(MF_TIMER_TEMP, TEMP_TIMER_FREQUENCY);
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ENABLE_TEMPERATURE_INTERRUPT();
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#if HAS_AUTO_FAN
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#define _OREFAN(I,N) || _EFANOVERLAP(I,N)
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#if HAS_AUTO_FAN_0
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INIT_E_AUTO_FAN_PIN(E0_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_1 && !_EFANOVERLAP(1,0)
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#if HAS_AUTO_FAN_1 && !_EFANOVERLAP(0,1)
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INIT_E_AUTO_FAN_PIN(E1_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_2 && !(_EFANOVERLAP(2,0) || _EFANOVERLAP(2,1))
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#if HAS_AUTO_FAN_2 && !(0 REPEAT2(2, _OREFAN, 2))
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INIT_E_AUTO_FAN_PIN(E2_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_3 && !(_EFANOVERLAP(3,0) || _EFANOVERLAP(3,1) || _EFANOVERLAP(3,2))
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#if HAS_AUTO_FAN_3 && !(0 REPEAT2(3, _OREFAN, 3))
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INIT_E_AUTO_FAN_PIN(E3_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_4 && !(_EFANOVERLAP(4,0) || _EFANOVERLAP(4,1) || _EFANOVERLAP(4,2) || _EFANOVERLAP(4,3))
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#if HAS_AUTO_FAN_4 && !(0 REPEAT2(4, _OREFAN, 4))
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INIT_E_AUTO_FAN_PIN(E4_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_5 && !(_EFANOVERLAP(5,0) || _EFANOVERLAP(5,1) || _EFANOVERLAP(5,2) || _EFANOVERLAP(5,3) || _EFANOVERLAP(5,4))
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#if HAS_AUTO_FAN_5 && !(0 REPEAT2(5, _OREFAN, 5))
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INIT_E_AUTO_FAN_PIN(E5_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_6 && !(_EFANOVERLAP(6,0) || _EFANOVERLAP(6,1) || _EFANOVERLAP(6,2) || _EFANOVERLAP(6,3) || _EFANOVERLAP(6,4) || _EFANOVERLAP(6,5))
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#if HAS_AUTO_FAN_6 && !(0 REPEAT2(6, _OREFAN, 6))
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INIT_E_AUTO_FAN_PIN(E6_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_FAN_7 && !(_EFANOVERLAP(7,0) || _EFANOVERLAP(7,1) || _EFANOVERLAP(7,2) || _EFANOVERLAP(7,3) || _EFANOVERLAP(7,4) || _EFANOVERLAP(7,5) || _EFANOVERLAP(7,6))
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#if HAS_AUTO_FAN_7 && !(0 REPEAT2(7, _OREFAN, 7))
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INIT_E_AUTO_FAN_PIN(E7_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_CHAMBER_FAN && !AUTO_CHAMBER_IS_E
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INIT_CHAMBER_AUTO_FAN_PIN(CHAMBER_AUTO_FAN_PIN);
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#endif
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#if HAS_AUTO_COOLER_FAN && !AUTO_COOLER_IS_E
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INIT_COOLER_AUTO_FAN_PIN(COOLER_AUTO_FAN_PIN);
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#endif
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#endif // HAS_AUTO_FAN
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#if HAS_HOTEND
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#define _TEMP_MIN_E(NR) do{ \
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