Add poll_runout_states, which returns 1 for runouts (#12547)
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@ -111,7 +111,7 @@ class FilamentSensorBase {
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static void filament_present(const uint8_t extruder);
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static void filament_present(const uint8_t extruder);
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public:
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public:
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static void setup() {
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static inline void setup() {
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#if ENABLED(FIL_RUNOUT_PULLUP)
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#if ENABLED(FIL_RUNOUT_PULLUP)
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#define INIT_RUNOUT_PIN(P) SET_INPUT_PULLUP(P)
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#define INIT_RUNOUT_PIN(P) SET_INPUT_PULLUP(P)
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#elif ENABLED(FIL_RUNOUT_PULLDOWN)
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#elif ENABLED(FIL_RUNOUT_PULLDOWN)
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@ -138,14 +138,8 @@ class FilamentSensorBase {
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#endif
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#endif
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}
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}
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#if FIL_RUNOUT_INVERTING
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// Return a bitmask of runout pin states
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#define FIL_RUNOUT_INVERT_MASK (_BV(NUM_RUNOUT_SENSORS) - 1)
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static inline uint8_t poll_runout_pins() {
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#else
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#define FIL_RUNOUT_INVERT_MASK 0
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#endif
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// Return a bitmask of all runout sensor states
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static uint8_t poll_runout_pins() {
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return (
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return (
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(READ(FIL_RUNOUT_PIN ) ? _BV(0) : 0)
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(READ(FIL_RUNOUT_PIN ) ? _BV(0) : 0)
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#if NUM_RUNOUT_SENSORS > 1
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#if NUM_RUNOUT_SENSORS > 1
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@ -163,7 +157,18 @@ class FilamentSensorBase {
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#endif
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#endif
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#endif
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#endif
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#endif
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#endif
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) ^ FIL_RUNOUT_INVERT_MASK;
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);
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}
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// Return a bitmask of runout flag states (1 bits always indicates runout)
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static inline uint8_t poll_runout_states() {
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return poll_runout_pins() ^ uint8_t(
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#if DISABLED(FIL_RUNOUT_INVERTING)
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_BV(NUM_RUNOUT_SENSORS) - 1
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#else
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0
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#endif
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);
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}
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}
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};
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};
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@ -219,22 +224,22 @@ class FilamentSensorBase {
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*/
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*/
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class FilamentSensorSwitch : public FilamentSensorBase {
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class FilamentSensorSwitch : public FilamentSensorBase {
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private:
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private:
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static bool poll_runout_pin(const uint8_t extruder) {
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static inline bool poll_runout_state(const uint8_t extruder) {
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const uint8_t runout_bits = poll_runout_pins();
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const uint8_t runout_states = poll_runout_states();
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#if NUM_RUNOUT_SENSORS == 1
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#if NUM_RUNOUT_SENSORS == 1
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UNUSED(extruder);
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UNUSED(extruder);
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return runout_bits; // A single sensor applying to all extruders
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return runout_states; // A single sensor applying to all extruders
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#else
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#else
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#if ENABLED(DUAL_X_CARRIAGE)
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#if ENABLED(DUAL_X_CARRIAGE)
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if (dual_x_carriage_mode == DXC_DUPLICATION_MODE || dual_x_carriage_mode == DXC_SCALED_DUPLICATION_MODE)
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if (dual_x_carriage_mode == DXC_DUPLICATION_MODE || dual_x_carriage_mode == DXC_SCALED_DUPLICATION_MODE)
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return runout_bits; // Any extruder
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return runout_states; // Any extruder
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else
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else
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#elif ENABLED(DUAL_NOZZLE_DUPLICATION_MODE)
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#elif ENABLED(DUAL_NOZZLE_DUPLICATION_MODE)
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if (extruder_duplication_enabled)
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if (extruder_duplication_enabled)
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return runout_bits; // Any extruder
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return runout_states; // Any extruder
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else
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else
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#endif
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#endif
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return TEST(runout_bits, extruder); // Specific extruder
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return TEST(runout_states, extruder); // Specific extruder
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#endif
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#endif
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}
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}
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@ -242,7 +247,7 @@ class FilamentSensorBase {
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static inline void block_completed(const block_t* const b) { UNUSED(b); }
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static inline void block_completed(const block_t* const b) { UNUSED(b); }
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static inline void run() {
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static inline void run() {
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const bool out = poll_runout_pin(active_extruder);
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const bool out = poll_runout_state(active_extruder);
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if (!out) filament_present(active_extruder);
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if (!out) filament_present(active_extruder);
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#ifdef FILAMENT_RUNOUT_SENSOR_DEBUG
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#ifdef FILAMENT_RUNOUT_SENSOR_DEBUG
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static bool was_out = false;
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static bool was_out = false;
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@ -272,7 +277,7 @@ class FilamentSensorBase {
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public:
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public:
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static float runout_distance_mm;
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static float runout_distance_mm;
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static void reset() {
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static inline void reset() {
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LOOP_L_N(i, EXTRUDERS) filament_present(i);
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LOOP_L_N(i, EXTRUDERS) filament_present(i);
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}
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}
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