Fix HAL/STM32 FastIO for analog pins (#19735)
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@ -51,15 +51,15 @@ void FastIO_init(); // Must be called before using fast io macros
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#if defined(STM32F0xx) || defined(STM32F1xx) || defined(STM32F3xx) || defined(STM32L0xx) || defined(STM32L4xx)
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#if defined(STM32F0xx) || defined(STM32F1xx) || defined(STM32F3xx) || defined(STM32L0xx) || defined(STM32L4xx)
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#define _WRITE(IO, V) do { \
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#define _WRITE(IO, V) do { \
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if (V) FastIOPortMap[STM_PORT(digitalPin[IO])]->BSRR = _BV32(STM_PIN(digitalPin[IO])) ; \
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if (V) FastIOPortMap[STM_PORT(digitalPinToPinName(IO))]->BSRR = _BV32(STM_PIN(digitalPinToPinName(IO))) ; \
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else FastIOPortMap[STM_PORT(digitalPin[IO])]->BRR = _BV32(STM_PIN(digitalPin[IO])) ; \
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else FastIOPortMap[STM_PORT(digitalPinToPinName(IO))]->BRR = _BV32(STM_PIN(digitalPinToPinName(IO))) ; \
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}while(0)
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}while(0)
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#else
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#else
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#define _WRITE(IO, V) (FastIOPortMap[STM_PORT(digitalPin[IO])]->BSRR = _BV32(STM_PIN(digitalPin[IO]) + ((V) ? 0 : 16)))
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#define _WRITE(IO, V) (FastIOPortMap[STM_PORT(digitalPinToPinName(IO))]->BSRR = _BV32(STM_PIN(digitalPinToPinName(IO)) + ((V) ? 0 : 16)))
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#endif
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#endif
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#define _READ(IO) bool(READ_BIT(FastIOPortMap[STM_PORT(digitalPin[IO])]->IDR, _BV32(STM_PIN(digitalPin[IO]))))
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#define _READ(IO) bool(READ_BIT(FastIOPortMap[STM_PORT(digitalPinToPinName(IO))]->IDR, _BV32(STM_PIN(digitalPinToPinName(IO)))))
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#define _TOGGLE(IO) (FastIOPortMap[STM_PORT(digitalPin[IO])]->ODR ^= _BV32(STM_PIN(digitalPin[IO])))
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#define _TOGGLE(IO) (FastIOPortMap[STM_PORT(digitalPinToPinName(IO))]->ODR ^= _BV32(STM_PIN(digitalPinToPinName(IO))))
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#define _GET_MODE(IO)
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#define _GET_MODE(IO)
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#define _SET_MODE(IO,M) pinMode(IO, M)
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#define _SET_MODE(IO,M) pinMode(IO, M)
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@ -51,8 +51,8 @@
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* It contains:
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* It contains:
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* - name of the signal
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* - name of the signal
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* - the Ard_num assigned by the pins_YOUR_BOARD.h file using the platform defines.
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* - the Ard_num assigned by the pins_YOUR_BOARD.h file using the platform defines.
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* EXAMPLE: "#define KILL_PIN PB1" results in Ard_num of 57. 57 is then used as an
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* EXAMPLE: "#define KILL_PIN PB1" results in Ard_num of 57. 57 is then used as the
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* index into digitalPin[] to get the Port_pin number
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* argument to digitalPinToPinName(IO) to get the Port_pin number
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* - if it is a digital or analog signal. PWMs are considered digital here.
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* - if it is a digital or analog signal. PWMs are considered digital here.
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*
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*
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* pin_xref is a structure generated by this header file. It is generated by the
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* pin_xref is a structure generated by this header file. It is generated by the
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@ -68,8 +68,6 @@
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* signal. The Arduino pin number is listed by the M43 I command.
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* signal. The Arduino pin number is listed by the M43 I command.
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*/
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*/
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extern const PinName digitalPin[]; // provided by the platform
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////////////////////////////////////////////////////////
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////////////////////////////////////////////////////////
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//
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//
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// make a list of the Arduino pin numbers in the Port/Pin order
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// make a list of the Arduino pin numbers in the Port/Pin order
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@ -137,7 +135,7 @@ const XrefInfo pin_xref[] PROGMEM = {
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uint8_t get_pin_mode(const pin_t Ard_num) {
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uint8_t get_pin_mode(const pin_t Ard_num) {
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uint32_t mode_all = 0;
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uint32_t mode_all = 0;
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const PinName dp = digitalPin[Ard_num];
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const PinName dp = digitalPinToPinName(Ard_num);
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switch (PORT_ALPHA(dp)) {
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switch (PORT_ALPHA(dp)) {
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case 'A' : mode_all = GPIOA->MODER; break;
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case 'A' : mode_all = GPIOA->MODER; break;
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case 'B' : mode_all = GPIOB->MODER; break;
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case 'B' : mode_all = GPIOB->MODER; break;
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@ -218,7 +216,7 @@ bool pwm_status(const pin_t Ard_num) {
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void pwm_details(const pin_t Ard_num) {
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void pwm_details(const pin_t Ard_num) {
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if (pwm_status(Ard_num)) {
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if (pwm_status(Ard_num)) {
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uint32_t alt_all = 0;
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uint32_t alt_all = 0;
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const PinName dp = digitalPin[Ard_num];
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const PinName dp = digitalPinToPinName(Ard_num);
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pin_t pin_number = uint8_t(PIN_NUM(dp));
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pin_t pin_number = uint8_t(PIN_NUM(dp));
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const bool over_7 = pin_number >= 8;
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const bool over_7 = pin_number >= 8;
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const uint8_t ind = over_7 ? 1 : 0;
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const uint8_t ind = over_7 ? 1 : 0;
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