⚡️ Optimize Sensitive Pins array (except STM32) (#22080)
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@ -186,7 +186,7 @@ inline void HAL_adc_init() {
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#define GET_PIN_MAP_INDEX(pin) pin
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#define PARSED_PIN_INDEX(code, dval) parser.intval(code, dval)
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#define HAL_SENSITIVE_PINS 0, 1
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#define HAL_SENSITIVE_PINS 0, 1,
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#ifdef __AVR_AT90USB1286__
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#define JTAG_DISABLE() do{ MCUCR = 0x80; MCUCR = 0x80; }while(0)
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@ -25,43 +25,6 @@
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#include "../../../gcode/parser.h"
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uint8_t analog_offset = NUM_DIGITAL_PINS - NUM_ANALOG_INPUTS;
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// Get the digital pin for an analog index
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pin_t analogInputToDigitalPin(const int8_t p) {
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return (WITHIN(p, 0, NUM_ANALOG_INPUTS) ? analog_offset + p : P_NC);
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}
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// Return the index of a pin number
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int16_t GET_PIN_MAP_INDEX(const pin_t pin) {
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return pin;
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}
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// Test whether the pin is valid
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bool VALID_PIN(const pin_t p) {
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return WITHIN(p, 0, NUM_DIGITAL_PINS);
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}
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// Get the analog index for a digital pin
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int8_t DIGITAL_PIN_TO_ANALOG_PIN(const pin_t p) {
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return (WITHIN(p, analog_offset, NUM_DIGITAL_PINS) ? p - analog_offset : P_NC);
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}
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// Test whether the pin is PWM
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bool PWM_PIN(const pin_t p) {
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return false;
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}
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// Test whether the pin is interruptable
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bool INTERRUPT_PIN(const pin_t p) {
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return false;
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}
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// Get the pin number at the given index
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pin_t GET_PIN_MAP_PIN(const int16_t ind) {
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return ind;
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}
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int16_t PARSED_PIN_INDEX(const char code, const int16_t dval) {
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return parser.intval(code, dval);
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}
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@ -34,26 +34,32 @@ constexpr uint8_t NUM_ANALOG_INPUTS = 16;
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#define HAL_SENSITIVE_PINS
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constexpr uint8_t analog_offset = NUM_DIGITAL_PINS - NUM_ANALOG_INPUTS;
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// Get the digital pin for an analog index
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pin_t analogInputToDigitalPin(const int8_t p);
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// Return the index of a pin number
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int16_t GET_PIN_MAP_INDEX(const pin_t pin);
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// Test whether the pin is valid
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bool VALID_PIN(const pin_t p);
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constexpr pin_t analogInputToDigitalPin(const int8_t p) {
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return (WITHIN(p, 0, NUM_ANALOG_INPUTS) ? analog_offset + p : P_NC);
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}
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// Get the analog index for a digital pin
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int8_t DIGITAL_PIN_TO_ANALOG_PIN(const pin_t p);
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constexpr int8_t DIGITAL_PIN_TO_ANALOG_PIN(const pin_t p) {
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return (WITHIN(p, analog_offset, NUM_DIGITAL_PINS) ? p - analog_offset : P_NC);
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}
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// Return the index of a pin number
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constexpr int16_t GET_PIN_MAP_INDEX(const pin_t pin) { return pin; }
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// Test whether the pin is valid
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constexpr bool VALID_PIN(const pin_t p) { return WITHIN(p, 0, NUM_DIGITAL_PINS); }
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// Test whether the pin is PWM
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bool PWM_PIN(const pin_t p);
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constexpr bool PWM_PIN(const pin_t p) { return false; }
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// Test whether the pin is interruptable
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bool INTERRUPT_PIN(const pin_t p);
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constexpr bool INTERRUPT_PIN(const pin_t p) { return false; }
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// Get the pin number at the given index
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pin_t GET_PIN_MAP_PIN(const int16_t ind);
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constexpr pin_t GET_PIN_MAP_PIN(const int16_t ind) { return ind; }
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// Parse a G-code word into a pin index
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int16_t PARSED_PIN_INDEX(const char code, const int16_t dval);
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@ -198,7 +198,7 @@ constexpr pin_t GET_PIN_MAP_PIN(const int16_t index) {
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// Parse a G-code word into a pin index
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int16_t PARSED_PIN_INDEX(const char code, const int16_t dval);
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// P0.6 thru P0.9 are for the onboard SD card
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#define HAL_SENSITIVE_PINS P0_06, P0_07, P0_08, P0_09
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#define HAL_SENSITIVE_PINS P0_06, P0_07, P0_08, P0_09,
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#define HAL_IDLETASK 1
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void HAL_idletask();
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@ -30,3 +30,6 @@
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#undef F_CPU
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#define F_CPU BOARD_F_CPU
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#endif
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// The Sensitive Pins array is not optimizable
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#define RUNTIME_ONLY_ANALOG_TO_DIGITAL
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@ -282,8 +282,15 @@ bool wait_for_heatup = true;
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#pragma GCC diagnostic push
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#pragma GCC diagnostic ignored "-Wnarrowing"
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#ifdef RUNTIME_ONLY_ANALOG_TO_DIGITAL
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static const pin_t sensitive_pins[] PROGMEM = { SENSITIVE_PINS };
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#else
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template <pin_t ...D>
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constexpr pin_t OnlyPins<-2, D...>::table[sizeof...(D)];
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#define sensitive_pins OnlyPins<SENSITIVE_PINS>::table
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#endif
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bool pin_is_protected(const pin_t pin) {
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static const pin_t sensitive_pins[] PROGMEM = SENSITIVE_PINS;
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LOOP_L_N(i, COUNT(sensitive_pins)) {
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pin_t sensitive_pin;
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memcpy_P(&sensitive_pin, &sensitive_pins[i], sizeof(pin_t));
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@ -187,8 +187,13 @@
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#else
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#define _I_MS3
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#endif
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#if PIN_EXISTS(I_ENABLE)
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#define _I_ENABLE_PIN I_ENABLE_PIN,
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#else
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#define _I_ENABLE_PIN
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#endif
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#define _I_PINS I_STEP_PIN, I_DIR_PIN, I_ENABLE_PIN, _I_MIN _I_MAX _I_MS1 _I_MS2 _I_MS3 _I_CS
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#define _I_PINS I_STEP_PIN, I_DIR_PIN, _I_ENABLE_PIN _I_MIN _I_MAX _I_MS1 _I_MS2 _I_MS3 _I_CS
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#else
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@ -228,8 +233,13 @@
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#else
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#define _J_MS3
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#endif
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#if PIN_EXISTS(J_ENABLE)
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#define _J_ENABLE_PIN J_ENABLE_PIN,
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#else
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#define _J_ENABLE_PIN
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#endif
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#define _J_PINS J_STEP_PIN, J_DIR_PIN, J_ENABLE_PIN, _J_MIN _J_MAX _J_MS1 _J_MS2 _J_MS3 _J_CS
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#define _J_PINS J_STEP_PIN, J_DIR_PIN, _J_ENABLE_PIN _J_MIN _J_MAX _J_MS1 _J_MS2 _J_MS3 _J_CS
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#else
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@ -269,8 +279,13 @@
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#else
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#define _K_MS3
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#endif
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#if PIN_EXISTS(K_ENABLE)
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#define _K_ENABLE_PIN K_ENABLE_PIN,
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#else
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#define _K_ENABLE_PIN
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#endif
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#define _K_PINS K_STEP_PIN, K_DIR_PIN, K_ENABLE_PIN, _K_MIN _K_MAX _K_MS1 _K_MS2 _K_MS3 _K_CS
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#define _K_PINS K_STEP_PIN, K_DIR_PIN, _K_ENABLE_PIN _K_MIN _K_MAX _K_MS1 _K_MS2 _K_MS3 _K_CS
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#else
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@ -577,30 +592,32 @@
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#define _H6_PINS
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#define _H7_PINS
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#define DIO_PIN(P) TERN(TARGET_LPC1768, P, analogInputToDigitalPin(P))
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#if HAS_HOTEND
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#undef _H0_PINS
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#define _H0_PINS HEATER_0_PIN, E0_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_0_PIN),
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#define _H0_PINS HEATER_0_PIN, E0_AUTO_FAN_PIN, DIO_PIN(TEMP_0_PIN),
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#if HAS_MULTI_HOTEND
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#undef _H1_PINS
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#define _H1_PINS HEATER_1_PIN, E1_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_1_PIN),
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#define _H1_PINS HEATER_1_PIN, E1_AUTO_FAN_PIN, DIO_PIN(TEMP_1_PIN),
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#if HOTENDS > 2
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#undef _H2_PINS
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#define _H2_PINS HEATER_2_PIN, E2_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_2_PIN),
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#define _H2_PINS HEATER_2_PIN, E2_AUTO_FAN_PIN, DIO_PIN(TEMP_2_PIN),
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#if HOTENDS > 3
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#undef _H3_PINS
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#define _H3_PINS HEATER_3_PIN, E3_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_3_PIN),
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#define _H3_PINS HEATER_3_PIN, E3_AUTO_FAN_PIN, DIO_PIN(TEMP_3_PIN),
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#if HOTENDS > 4
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#undef _H4_PINS
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#define _H4_PINS HEATER_4_PIN, E4_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_4_PIN),
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#define _H4_PINS HEATER_4_PIN, E4_AUTO_FAN_PIN, DIO_PIN(TEMP_4_PIN),
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#if HOTENDS > 5
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#undef _H5_PINS
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#define _H5_PINS HEATER_5_PIN, E5_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_5_PIN),
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#define _H5_PINS HEATER_5_PIN, E5_AUTO_FAN_PIN, DIO_PIN(TEMP_5_PIN),
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#if HOTENDS > 6
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#undef _H6_PINS
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#define _H6_PINS HEATER_6_PIN, E6_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_6_PIN),
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#define _H6_PINS HEATER_6_PIN, E6_AUTO_FAN_PIN, DIO_PIN(TEMP_6_PIN),
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#if HOTENDS > 7
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#undef _H7_PINS
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#define _H7_PINS HEATER_7_PIN, E7_AUTO_FAN_PIN, analogInputToDigitalPin(TEMP_7_PIN),
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#define _H7_PINS HEATER_7_PIN, E7_AUTO_FAN_PIN, DIO_PIN(TEMP_7_PIN),
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#endif // HOTENDS > 7
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#endif // HOTENDS > 6
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#endif // HOTENDS > 5
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@ -809,13 +826,13 @@
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#endif
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#if TEMP_SENSOR_BED && PINS_EXIST(TEMP_BED, HEATER_BED)
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#define _BED_PINS HEATER_BED_PIN, analogInputToDigitalPin(TEMP_BED_PIN),
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#define _BED_PINS HEATER_BED_PIN, DIO_PIN(TEMP_BED_PIN),
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#else
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#define _BED_PINS
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#endif
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#if TEMP_SENSOR_CHAMBER && PIN_EXISTS(TEMP_CHAMBER)
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#define _CHAMBER_TEMP analogInputToDigitalPin(TEMP_CHAMBER_PIN),
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#define _CHAMBER_TEMP DIO_PIN(TEMP_CHAMBER_PIN),
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#else
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#define _CHAMBER_TEMP
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#endif
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@ -831,17 +848,15 @@
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#endif
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#if TEMP_SENSOR_COOLER && PIN_EXISTS(TEMP_COOLER)
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#define _COOLER_TEMP analogInputToDigitalPin(TEMP_COOLER_PIN),
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#define _COOLER_TEMP DIO_PIN(TEMP_COOLER_PIN),
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#else
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#define _COOLER_TEMP
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#endif
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#if TEMP_SENSOR_COOLER && PIN_EXISTS(COOLER)
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#define _COOLER COOLER_PIN,
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#else
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#define _COOLER
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#endif
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#if TEMP_SENSOR_COOLER && PINS_EXIST(TEMP_COOLER, COOLER_AUTO_FAN)
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#define _COOLER_FAN COOLER_AUTO_FAN_PIN,
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#else
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@ -852,11 +867,30 @@
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#define HAL_SENSITIVE_PINS
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#endif
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#define SENSITIVE_PINS { \
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#ifdef RUNTIME_ONLY_ANALOG_TO_DIGITAL
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#define _SP_END
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#else
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#define _SP_END -2
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// Move a regular pin in front to the end
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template<pin_t F, pin_t ...D>
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struct OnlyPins : OnlyPins<D..., F> { };
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// Remove a -1 from the front
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template<pin_t ...D>
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struct OnlyPins<-1, D...> : OnlyPins<D...> { };
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// Remove -2 from the front, emit the rest, cease propagation
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template<pin_t ...D>
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struct OnlyPins<_SP_END, D...> { static constexpr pin_t table[sizeof...(D)] PROGMEM = { D... }; };
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#endif
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#define SENSITIVE_PINS \
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_X_PINS _Y_PINS _Z_PINS _I_PINS _J_PINS _K_PINS \
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_X2_PINS _Y2_PINS _Z2_PINS _Z3_PINS _Z4_PINS _Z_PROBE \
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_E0_PINS _E1_PINS _E2_PINS _E3_PINS _E4_PINS _E5_PINS _E6_PINS _E7_PINS \
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_H0_PINS _H1_PINS _H2_PINS _H3_PINS _H4_PINS _H5_PINS _H6_PINS _H7_PINS \
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_PS_ON _FAN0 _FAN1 _FAN2 _FAN3 _FAN4 _FAN5 _FAN6 _FAN7 _FANC \
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_BED_PINS _COOLER _CHAMBER_TEMP _CHAMBER_HEATER _CHAMBER_FAN HAL_SENSITIVE_PINS \
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}
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_BED_PINS _CHAMBER_TEMP _CHAMBER_HEATER _CHAMBER_FAN \
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_COOLER_TEMP _COOLER _COOLER_FAN HAL_SENSITIVE_PINS \
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_SP_END
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