✨ NUM_REDUNDANT_FANS (#25808)
Co-authored-by: Scott Lahteine <thinkyhead@users.noreply.github.com>
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@ -660,9 +660,12 @@
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#endif
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/**
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* Use one of the PWM fans as a redundant part-cooling fan
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* Assign more PWM fans for part cooling, synchronized with Fan 0
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*/
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//#define REDUNDANT_PART_COOLING_FAN 2 // Index of the fan to sync with FAN 0.
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//#define REDUNDANT_PART_COOLING_FAN 1 // Index of the first fan to synchronize with Fan 0
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#ifdef REDUNDANT_PART_COOLING_FAN
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//#define NUM_REDUNDANT_FANS 1 // Number of sequential fans to synchronize with Fan 0
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#endif
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// @section extruder
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@ -61,9 +61,7 @@
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void GcodeSuite::M106() {
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const uint8_t pfan = parser.byteval('P', _ALT_P);
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if (pfan >= _CNT_P) return;
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#if REDUNDANT_PART_COOLING_FAN
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if (pfan == REDUNDANT_PART_COOLING_FAN) return;
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#endif
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if (FAN_IS_REDUNDANT(pfan)) return;
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#if ENABLED(EXTRA_FAN_SPEED)
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const uint16_t t = parser.intval('T');
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@ -102,9 +100,7 @@ void GcodeSuite::M106() {
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void GcodeSuite::M107() {
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const uint8_t pfan = parser.byteval('P', _ALT_P);
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if (pfan >= _CNT_P) return;
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#if REDUNDANT_PART_COOLING_FAN
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if (pfan == REDUNDANT_PART_COOLING_FAN) return;
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#endif
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if (FAN_IS_REDUNDANT(pfan)) return;
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thermalManager.set_fan_speed(pfan, 0);
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@ -1280,3 +1280,8 @@
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#define MULTISTEPPING_LIMIT 128
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#define MULTISTEPPING_LIMIT_WARNING 1
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#endif
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// One redundant cooling fan by default
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#if defined(REDUNDANT_PART_COOLING_FAN) && !defined(NUM_REDUNDANT_FANS)
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#define NUM_REDUNDANT_FANS 1
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#endif
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@ -1843,8 +1843,10 @@ static_assert(COUNT(arm) == LOGICAL_AXES, "AXIS_RELATIVE_MODES must contain " _L
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#ifdef REDUNDANT_PART_COOLING_FAN
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#if FAN_COUNT < 2
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#error "REDUNDANT_PART_COOLING_FAN requires a board with at least two PWM fans."
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#else
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static_assert(WITHIN(REDUNDANT_PART_COOLING_FAN, 1, FAN_COUNT - 1), "REDUNDANT_PART_COOLING_FAN must be between 1 and " STRINGIFY(DECREMENT(FAN_COUNT)) ".");
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#elif !WITHIN(REDUNDANT_PART_COOLING_FAN, 1, FAN_COUNT - 1)
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static_assert(false, "REDUNDANT_PART_COOLING_FAN must be between 1 and " STRINGIFY(DECREMENT(FAN_COUNT)) ".");
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#elif !WITHIN(REDUNDANT_PART_COOLING_FAN + NUM_REDUNDANT_FANS - 1, 1, FAN_COUNT - 1)
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#error "Not enough fans available for NUM_REDUNDANT_FANS."
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#endif
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#endif
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@ -580,10 +580,10 @@ class MenuItem_bool : public MenuEditItemBase {
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}while(0)
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#if FAN_COUNT > 1
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#define FAN_EDIT_ITEMS(F) _FAN_EDIT_ITEMS(F,FAN_SPEED_N)
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#define FAN_EDIT_ITEMS(F) _FAN_EDIT_ITEMS(F, FAN_SPEED_N)
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#endif
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#define SNFAN(N) (ENABLED(SINGLENOZZLE_STANDBY_FAN) && !HAS_FAN##N && EXTRUDERS > N)
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#define SNFAN(N) (ENABLED(SINGLENOZZLE_STANDBY_FAN) && !HAS_FAN##N && (N) < EXTRUDERS)
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#if SNFAN(1) || SNFAN(2) || SNFAN(3) || SNFAN(4) || SNFAN(5) || SNFAN(6) || SNFAN(7)
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#define DEFINE_SINGLENOZZLE_ITEM() \
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@ -221,40 +221,40 @@ void menu_temperature() {
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DEFINE_SINGLENOZZLE_ITEM();
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#if HAS_FAN0
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_FAN_EDIT_ITEMS(0,FIRST_FAN_SPEED);
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#if FAN_IS_M106ABLE(0)
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_FAN_EDIT_ITEMS(0, FIRST_FAN_SPEED);
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#endif
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#if HAS_FAN1 && REDUNDANT_PART_COOLING_FAN != 1
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#if FAN_IS_M106ABLE(1)
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FAN_EDIT_ITEMS(1);
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#elif SNFAN(1)
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singlenozzle_item(1);
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#endif
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#if HAS_FAN2 && REDUNDANT_PART_COOLING_FAN != 2
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#if FAN_IS_M106ABLE(2)
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FAN_EDIT_ITEMS(2);
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#elif SNFAN(2)
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singlenozzle_item(2);
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#endif
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#if HAS_FAN3 && REDUNDANT_PART_COOLING_FAN != 3
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#if FAN_IS_M106ABLE(3)
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FAN_EDIT_ITEMS(3);
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#elif SNFAN(3)
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singlenozzle_item(3);
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#endif
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#if HAS_FAN4 && REDUNDANT_PART_COOLING_FAN != 4
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#if FAN_IS_M106ABLE(4)
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FAN_EDIT_ITEMS(4);
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#elif SNFAN(4)
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singlenozzle_item(4);
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#endif
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#if HAS_FAN5 && REDUNDANT_PART_COOLING_FAN != 5
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#if FAN_IS_M106ABLE(5)
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FAN_EDIT_ITEMS(5);
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#elif SNFAN(5)
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singlenozzle_item(5);
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#endif
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#if HAS_FAN6 && REDUNDANT_PART_COOLING_FAN != 6
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#if FAN_IS_M106ABLE(6)
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FAN_EDIT_ITEMS(6);
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#elif SNFAN(6)
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singlenozzle_item(6);
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#endif
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#if HAS_FAN7 && REDUNDANT_PART_COOLING_FAN != 7
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#if FAN_IS_M106ABLE(7)
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FAN_EDIT_ITEMS(7);
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#elif SNFAN(7)
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singlenozzle_item(7);
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@ -153,40 +153,40 @@ void menu_tune() {
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DEFINE_SINGLENOZZLE_ITEM();
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#if HAS_FAN0
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_FAN_EDIT_ITEMS(0,FIRST_FAN_SPEED);
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#if FAN_IS_M106ABLE(0)
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_FAN_EDIT_ITEMS(0, FIRST_FAN_SPEED);
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#endif
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#if HAS_FAN1 && REDUNDANT_PART_COOLING_FAN != 1
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#if FAN_IS_M106ABLE(1)
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FAN_EDIT_ITEMS(1);
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#elif SNFAN(1)
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singlenozzle_item(1);
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#endif
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#if HAS_FAN2 && REDUNDANT_PART_COOLING_FAN != 2
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#if FAN_IS_M106ABLE(2)
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FAN_EDIT_ITEMS(2);
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#elif SNFAN(2)
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singlenozzle_item(2);
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#endif
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#if HAS_FAN3 && REDUNDANT_PART_COOLING_FAN != 3
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#if FAN_IS_M106ABLE(3)
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FAN_EDIT_ITEMS(3);
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#elif SNFAN(3)
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singlenozzle_item(3);
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#endif
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#if HAS_FAN4 && REDUNDANT_PART_COOLING_FAN != 4
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#if FAN_IS_M106ABLE(4)
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FAN_EDIT_ITEMS(4);
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#elif SNFAN(4)
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singlenozzle_item(4);
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#endif
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#if HAS_FAN5 && REDUNDANT_PART_COOLING_FAN != 5
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#if FAN_IS_M106ABLE(5)
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FAN_EDIT_ITEMS(5);
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#elif SNFAN(5)
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singlenozzle_item(5);
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#endif
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#if HAS_FAN6 && REDUNDANT_PART_COOLING_FAN != 6
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#if FAN_IS_M106ABLE(6)
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FAN_EDIT_ITEMS(6);
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#elif SNFAN(6)
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singlenozzle_item(6);
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#endif
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#if HAS_FAN7 && REDUNDANT_PART_COOLING_FAN != 7
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#if FAN_IS_M106ABLE(7)
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FAN_EDIT_ITEMS(7);
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#elif SNFAN(7)
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singlenozzle_item(7);
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@ -467,8 +467,12 @@ PGMSTR(str_t_heating_failed, STR_T_HEATING_FAILED);
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if (fan >= FAN_COUNT) return;
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fan_speed[fan] = speed;
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#if REDUNDANT_PART_COOLING_FAN
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if (fan == 0) fan_speed[REDUNDANT_PART_COOLING_FAN] = speed;
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#if NUM_REDUNDANT_FANS
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if (fan == 0) {
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for (uint8_t f = REDUNDANT_PART_COOLING_FAN; f < REDUNDANT_PART_COOLING_FAN + NUM_REDUNDANT_FANS; ++f)
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thermalManager.set_fan_speed(f, 0);
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}
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#endif
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TERN_(REPORT_FAN_CHANGE, report_fan_speed(fan));
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@ -44,6 +44,17 @@
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#define HOTEND_INDEX TERN(HAS_MULTI_HOTEND, e, 0)
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#define E_NAME TERN_(HAS_MULTI_HOTEND, e)
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#if HAS_FAN
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#if NUM_REDUNDANT_FANS
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#define FAN_IS_REDUNDANT(Q) WITHIN(Q, REDUNDANT_PART_COOLING_FAN, REDUNDANT_PART_COOLING_FAN + NUM_REDUNDANT_FANS - 1)
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#else
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#define FAN_IS_REDUNDANT(Q) false
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#endif
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#define FAN_IS_M106ABLE(Q) (HAS_FAN##Q && !FAN_IS_REDUNDANT(Q))
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#else
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#define FAN_IS_M106ABLE(Q) false
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#endif
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// Element identifiers. Positive values are hotends. Negative values are other heaters or coolers.
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typedef enum : int_fast8_t {
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H_REDUNDANT = HID_REDUNDANT,
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