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Clean up fastIO ahead of PWM patch
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@ -273,16 +273,15 @@ enum ClockSource2 : char {
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#define SET_FOCB(T,V) SET_FOC(T,B,V)
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#define SET_FOCB(T,V) SET_FOC(T,B,V)
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#define SET_FOCC(T,V) SET_FOC(T,C,V)
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#define SET_FOCC(T,V) SET_FOC(T,C,V)
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/**
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/**
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* PWM availability macros
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* PWM availability macros
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*/
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*/
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// Determine which harware PWMs are already in use
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// Determine which harware PWMs are already in use
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#if PIN_EXISTS(CONTROLLER_FAN)
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#if PIN_EXISTS(CONTROLLER_FAN)
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#define PWM_CHK_FAN_B(p) (p == CONTROLLER_FAN_PIN || p == E0_AUTO_FAN_PIN || p == E1_AUTO_FAN_PIN || p == E2_AUTO_FAN_PIN || p == E3_AUTO_FAN_PIN || p == E4_AUTO_FAN_PIN || p == CHAMBER_AUTO_FAN_PIN)
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#define PWM_CHK_FAN_B(p) (p == CONTROLLER_FAN_PIN || p == E0_AUTO_FAN_PIN || p == E1_AUTO_FAN_PIN || p == E2_AUTO_FAN_PIN || p == E3_AUTO_FAN_PIN || p == E4_AUTO_FAN_PIN || p == E5_AUTO_FAN_PIN || p == CHAMBER_AUTO_FAN_PIN)
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#else
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#else
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#define PWM_CHK_FAN_B(p) (p == E0_AUTO_FAN_PIN || p == E1_AUTO_FAN_PIN || p == E2_AUTO_FAN_PIN || p == E3_AUTO_FAN_PIN || p == E4_AUTO_FAN_PIN || p == CHAMBER_AUTO_FAN_PIN)
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#define PWM_CHK_FAN_B(p) (p == E0_AUTO_FAN_PIN || p == E1_AUTO_FAN_PIN || p == E2_AUTO_FAN_PIN || p == E3_AUTO_FAN_PIN || p == E4_AUTO_FAN_PIN || p == E5_AUTO_FAN_PIN || p == CHAMBER_AUTO_FAN_PIN)
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#endif
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#endif
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#if PIN_EXISTS(FAN) || PIN_EXISTS(FAN1) || PIN_EXISTS(FAN2)
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#if PIN_EXISTS(FAN) || PIN_EXISTS(FAN1) || PIN_EXISTS(FAN2)
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@ -335,24 +334,22 @@ enum ClockSource2 : char {
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#define PWM_CHK_HEATER(p) false
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#define PWM_CHK_HEATER(p) false
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#endif
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#endif
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#define PWM_CHK(p) (PWM_CHK_HEATER(p) || PWM_CHK_SERVO(p) || PWM_CHK_MOTOR_CURRENT(p)\
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#define PWM_CHK(p) (PWM_CHK_HEATER(p) || PWM_CHK_SERVO(p) || PWM_CHK_MOTOR_CURRENT(p) || PWM_CHK_FAN_A(p) || PWM_CHK_FAN_B(p))
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|| PWM_CHK_FAN_A(p) || PWM_CHK_FAN_B(p))
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// define which hardware PWMs are available for the current CPU
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// define which hardware PWMs are available for the current CPU
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// all timer 1 PWMS deleted from this list because they are never available
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// all timer 1 PWMS deleted from this list because they are never available
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#if AVR_ATmega2560_FAMILY
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#if AVR_ATmega2560_FAMILY
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#define PWM_PINS(p) ((p >= 2 && p <= 10) || p == 13 || p == 44 || p == 45 || p == 46)
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#define PWM_PIN(p) ((p >= 2 && p <= 10) || p == 13 || p == 44 || p == 45 || p == 46)
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#elif AVR_ATmega2561_FAMILY
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#elif AVR_ATmega2561_FAMILY
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#define PWM_PINS(p) ((p >= 2 && p <= 6) || p == 9)
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#define PWM_PIN(p) ((p >= 2 && p <= 6) || p == 9)
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#elif AVR_ATmega1284_FAMILY
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#elif AVR_ATmega1284_FAMILY
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#define PWM_PINS(p) (p == 3 || p == 4 || p == 14 || p == 15)
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#define PWM_PIN(p) (p == 3 || p == 4 || p == 14 || p == 15)
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#elif AVR_AT90USB1286_FAMILY
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#elif AVR_AT90USB1286_FAMILY
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#define PWM_PINS(p) (p == 0 || p == 1 || p == 14 || p == 15 || p == 16 || p == 24)
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#define PWM_PIN(p) (p == 0 || p == 1 || p == 14 || p == 15 || p == 16 || p == 24)
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#elif AVR_ATmega328_FAMILY
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#elif AVR_ATmega328_FAMILY
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#define PWM_PINS(p) (p == 3 || p == 5 || p == 6 || p == 11)
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#define PWM_PIN(p) (p == 3 || p == 5 || p == 6 || p == 11)
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#else
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#else
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#error "unknown CPU"
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#error "unknown CPU"
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#endif
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#endif
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// finally - the macro that tells us if a pin is an available hardware PWM
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#define USEABLE_HARDWARE_PWM(P) (PWM_PIN(P) && !PWM_CHK(p))
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#define USEABLE_HARDWARE_PWM(p) (PWM_PINS(p) && !PWM_CHK(p))
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@ -174,9 +174,9 @@
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#define SET_OUTPUT(IO) _SET_OUTPUT(IO)
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#define SET_OUTPUT(IO) _SET_OUTPUT(IO)
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// Check if pin is an input
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// Check if pin is an input
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#define GET_INPUT(IO) !(digitalPinToPort(IO)->PIO_OSR & digitalPinToBitMask(IO))
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#define GET_INPUT(IO) ((digitalPinToPort(IO)->PIO_OSR & digitalPinToBitMask(IO)) == 0)
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// Check if pin is an output
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// Check if pin is an output
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#define GET_OUTPUT(IO) !!(digitalPinToPort(IO)->PIO_OSR & digitalPinToBitMask(IO))
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#define GET_OUTPUT(IO) ((digitalPinToPort(IO)->PIO_OSR & digitalPinToBitMask(IO)) != 0)
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// Check if pin is a timer - Must be a constexpr
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// Check if pin is a timer - Must be a constexpr
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#define GET_TIMER(IO) ((IO) >= 2 && (IO) <= 13)
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#define GET_TIMER(IO) ((IO) >= 2 && (IO) <= 13)
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@ -87,7 +87,7 @@
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// hg42: instead use PWM bit from the #define
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// hg42: instead use PWM bit from the #define
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/// check if pin is a timer
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/// check if pin is a timer
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#define _GET_TIMER(IO) TRUE // could be LPC1768_PIN_PWM(IO), but there
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#define _GET_TIMER(IO) true // could be LPC1768_PIN_PWM(IO), but there
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// hg42: could be this:
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// hg42: could be this:
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// #define _GET_TIMER(IO) LPC1768_PIN_PWM(IO)
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// #define _GET_TIMER(IO) LPC1768_PIN_PWM(IO)
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// but this is an incomplete check (12 pins are PWMable, but only 6 can be used at the same time)
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// but this is an incomplete check (12 pins are PWMable, but only 6 can be used at the same time)
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@ -35,7 +35,8 @@
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#include <Arduino.h>
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#include <Arduino.h>
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#define USEABLE_HARDWARE_PWM(pin) TRUE // all pins are PWM capable
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#define PWM_PIN(P) true // all pins are PWM capable
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#define USEABLE_HARDWARE_PWM(P) PWM_PIN(P)
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#define LPC_PIN(pin) gpio_pin(pin)
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#define LPC_PIN(pin) gpio_pin(pin)
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#define LPC_GPIO(port) gpio_port(port)
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#define LPC_GPIO(port) gpio_port(port)
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@ -90,7 +91,7 @@
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/// check if pin is a timer
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/// check if pin is a timer
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/// all gpio pins are pwm capable, either interrupt or hardware pwm controlled
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/// all gpio pins are pwm capable, either interrupt or hardware pwm controlled
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#define _GET_TIMER(IO) TRUE
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#define _GET_TIMER(IO) true
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/// Read a pin wrapper
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/// Read a pin wrapper
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#define READ(IO) _READ(IO)
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#define READ(IO) _READ(IO)
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@ -207,7 +207,6 @@ static void NVIC_SetPriorityGrouping(uint32_t PriorityGroup) {
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} }
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} }
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#endif
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#endif
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void HAL_init(void) {
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void HAL_init(void) {
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NVIC_SetPriorityGrouping(0x3);
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NVIC_SetPriorityGrouping(0x3);
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}
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}
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@ -2014,7 +2014,7 @@ static_assert( _ARR_TEST(3,0) && _ARR_TEST(3,1) && _ARR_TEST(3,2)
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#endif
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#endif
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#if ENABLED(FAST_PWM_FAN) && !(defined(ARDUINO) && !defined(ARDUINO_ARCH_SAM))
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#if ENABLED(FAST_PWM_FAN) && !(defined(ARDUINO) && !defined(ARDUINO_ARCH_SAM))
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#error "FAST_PWM_FAN only supported by 8 bit CPUs."
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#error "FAST_PWM_FAN is only supported for ARDUINO and ARDUINO_ARCH_SAM."
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#endif
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#endif
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#if ENABLED(Z_STEPPER_AUTO_ALIGN)
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#if ENABLED(Z_STEPPER_AUTO_ALIGN)
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