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@ -60,7 +60,7 @@ static bool report_pin_name(int8_t pin, bool &pin_is_analog) {
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if (pin == 1) { sprintf(buffer, NAME_FORMAT, "TXD"); SERIAL_ECHO(buffer); return true; }
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if (pin == 1) { sprintf(buffer, NAME_FORMAT, "TXD"); SERIAL_ECHO(buffer); return true; }
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#endif
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#endif
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// Pin list updated from 7 OCT RCBugfix branch
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// Pin list updated from 7 OCT RCBugfix branch - max length of pin name is 24
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#if defined(__FD) && __FD >= 0
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#if defined(__FD) && __FD >= 0
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PIN_SAY(__FD)
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PIN_SAY(__FD)
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#endif
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#endif
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@ -656,10 +656,10 @@ static bool report_pin_name(int8_t pin, bool &pin_is_analog) {
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} // report_pin_name
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} // report_pin_name
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#define PWM_PRINT(V) do{ sprintf(buffer, "PWM: %4d", V); SERIAL_ECHO(buffer); }while(0)
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#define PWM_PRINT(V) do{ sprintf(buffer, "PWM: %4d", V); SERIAL_ECHO(buffer); }while(0)
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#define PWM_CASE(N) \
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#define PWM_CASE(N,Z) \
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case TIMER##N: \
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case TIMER##N##Z: \
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if (TCCR##N & (_BV(COM## N ##1) | _BV(COM## N ##0))) { \
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if (TCCR##N##A & (_BV(COM##N##Z##1) | _BV(COM##N##Z##0))) { \
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PWM_PRINT(OCR##N); \
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PWM_PRINT(OCR##N##Z); \
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return true; \
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return true; \
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} else return false
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} else return false
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@ -667,43 +667,43 @@ static bool report_pin_name(int8_t pin, bool &pin_is_analog) {
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* Print a pin's PWM status.
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* Print a pin's PWM status.
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* Return true if it's currently a PWM pin.
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* Return true if it's currently a PWM pin.
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*/
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*/
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static bool PWM_status(uint8_t pin) {
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static bool pwm_status(uint8_t pin) {
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char buffer[20]; // for the sprintf statements
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char buffer[20]; // for the sprintf statements
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switch(digitalPinToTimer(pin)) {
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switch(digitalPinToTimer(pin)) {
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#if defined(TCCR0A) && defined(COM0A1)
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#if defined(TCCR0A) && defined(COM0A1)
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PWM_CASE(0A);
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PWM_CASE(0,A);
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PWM_CASE(0B);
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PWM_CASE(0,B);
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#endif
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#endif
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#if defined(TCCR1A) && defined(COM1A1)
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#if defined(TCCR1A) && defined(COM1A1)
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PWM_CASE(1A);
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PWM_CASE(1,A);
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PWM_CASE(1B);
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PWM_CASE(1,B);
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PWM_CASE(1C);
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PWM_CASE(1,C);
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#endif
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#endif
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#if defined(TCCR2A) && defined(COM2A1)
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#if defined(TCCR2A) && defined(COM2A1)
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PWM_CASE(2A);
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PWM_CASE(2,A);
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PWM_CASE(2B);
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PWM_CASE(2,B);
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#endif
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#endif
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#if defined(TCCR3A) && defined(COM3A1)
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#if defined(TCCR3A) && defined(COM3A1)
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PWM_CASE(3A);
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PWM_CASE(3,A);
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PWM_CASE(3B);
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PWM_CASE(3,B);
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PWM_CASE(3C);
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PWM_CASE(3,C);
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#endif
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#endif
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#ifdef TCCR4A
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#ifdef TCCR4A
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PWM_CASE(4A);
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PWM_CASE(4,A);
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PWM_CASE(4B);
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PWM_CASE(4,B);
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PWM_CASE(4C);
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PWM_CASE(4,C);
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#endif
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#endif
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#if defined(TCCR5A) && defined(COM5A1)
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#if defined(TCCR5A) && defined(COM5A1)
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PWM_CASE(5A);
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PWM_CASE(5,A);
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PWM_CASE(5B);
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PWM_CASE(5,B);
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PWM_CASE(5C);
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PWM_CASE(5,C);
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#endif
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#endif
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case NOT_ON_TIMER:
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case NOT_ON_TIMER:
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@ -711,10 +711,10 @@ static bool PWM_status(uint8_t pin) {
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return false;
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return false;
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}
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}
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SERIAL_PROTOCOLPGM(" ");
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SERIAL_PROTOCOLPGM(" ");
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} //PWM_status
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} // pwm_status
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#define WGM_MAKE3(N) ((TEST(TCCR##N##B, WGM##N##2) >> 1) | (TCCR##N##A & (_BV(WGM##N##0) | _BV(WGM##N##1))))
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#define WGM_MAKE3(N) (((TCCR##N##B & _BV(WGM##N##2)) >> 1) | (TCCR##N##A & (_BV(WGM##N##0) | _BV(WGM##N##1))))
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#define WGM_MAKE4(N) (WGM_MAKE3(N) | (TEST(TCCR##N##B, WGM##N##3) >> 1))
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#define WGM_MAKE4(N) (WGM_MAKE3(N) | (TCCR##N##B & _BV(WGM##N##3)) >> 1)
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#define TIMER_PREFIX(T,L,N) do{ \
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#define TIMER_PREFIX(T,L,N) do{ \
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WGM = WGM_MAKE##N(T); \
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WGM = WGM_MAKE##N(T); \
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SERIAL_PROTOCOLPGM(" TIMER"); \
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SERIAL_PROTOCOLPGM(" TIMER"); \
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@ -745,7 +745,7 @@ static void err_prob_interrupt() {
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}
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}
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static void can_be_used() { SERIAL_PROTOCOLPGM(" can be used as PWM "); }
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static void can_be_used() { SERIAL_PROTOCOLPGM(" can be used as PWM "); }
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static void PWM_details(uint8_t pin) {
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static void pwm_details(uint8_t pin) {
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uint8_t WGM;
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uint8_t WGM;
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@ -885,9 +885,7 @@ static void PWM_details(uint8_t pin) {
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}
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}
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SERIAL_PROTOCOLPGM(" ");
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SERIAL_PROTOCOLPGM(" ");
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} // PWM_details
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} // pwm_details
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inline void report_pin_state(int8_t pin) {
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inline void report_pin_state(int8_t pin) {
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SERIAL_ECHO((int)pin);
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SERIAL_ECHO((int)pin);
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@ -938,7 +936,7 @@ inline void report_pin_state_extended(int8_t pin, bool ignore) {
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pinMode(pin, INPUT_PULLUP); // make sure input isn't floating
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pinMode(pin, INPUT_PULLUP); // make sure input isn't floating
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SERIAL_PROTOCOLPAIR("Input = ", digitalRead_mod(pin));
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SERIAL_PROTOCOLPAIR("Input = ", digitalRead_mod(pin));
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}
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}
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else if (PWM_status(pin)) {
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else if (pwm_status(pin)) {
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// do nothing
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// do nothing
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}
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}
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else SERIAL_PROTOCOLPAIR("Output = ", digitalRead_mod(pin));
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else SERIAL_PROTOCOLPAIR("Output = ", digitalRead_mod(pin));
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@ -946,7 +944,7 @@ inline void report_pin_state_extended(int8_t pin, bool ignore) {
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}
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}
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// report PWM capabilities
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// report PWM capabilities
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PWM_details(pin);
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pwm_details(pin);
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SERIAL_EOL;
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SERIAL_EOL;
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}
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}
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