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CPU handling
Technique adapted from David Cutting's solution
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17
Hardware.cpp
17
Hardware.cpp
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@ -6,6 +6,13 @@
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#include "Config.h"
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#include "DIAG.h"
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#if defined(ARDUINO_ARCH_AVR)
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#include <DIO2.h>
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#define WritePin digitalWrite2
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#else
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#define WritePin digitalWrite
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#endif
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void Hardware::init() {
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pinMode(MAIN_POWER_PIN, OUTPUT);
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pinMode(MAIN_SIGNAL_PIN, OUTPUT);
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@ -19,17 +26,17 @@ void Hardware::init() {
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}
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void Hardware::setPower(bool isMainTrack, bool on) {
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digitalWrite(isMainTrack ? MAIN_POWER_PIN : PROG_POWER_PIN, on ? HIGH : LOW);
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WritePin(isMainTrack ? MAIN_POWER_PIN : PROG_POWER_PIN, on ? HIGH : LOW);
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}
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void Hardware::setBrake(bool isMainTrack, bool on) {
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digitalWrite(isMainTrack ? MAIN_BRAKE_PIN : PROG_BRAKE_PIN, on ? LOW:HIGH);
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WritePin(isMainTrack ? MAIN_BRAKE_PIN : PROG_BRAKE_PIN, on ? LOW:HIGH);
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}
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void Hardware::setSignal(bool isMainTrack, bool high) {
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byte pin = isMainTrack ? MAIN_SIGNAL_PIN : PROG_SIGNAL_PIN;
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byte pin2 = isMainTrack ? MAIN_SIGNAL_PIN_ALT : PROG_SIGNAL_PIN_ALT;
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digitalWrite(pin, high ? HIGH : LOW);
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if (pin2) digitalWrite(pin2, high ? LOW : HIGH);
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WritePin(pin, high ? HIGH : LOW);
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if (pin2) WritePin(pin2, high ? LOW : HIGH);
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}
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int Hardware::getCurrentMilliamps(bool isMainTrack) {
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@ -46,12 +53,14 @@ void Hardware::setCallback(int duration, void (*isr)()) {
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Timer3.disablePwm(TIMER3_B_PIN);
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Timer3.attachInterrupt(isr);
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}
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void Hardware::setSingleCallback(int duration, void (*isr)()) {
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Timer1.initialize(duration);
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Timer1.disablePwm(TIMER1_A_PIN);
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Timer1.disablePwm(TIMER1_B_PIN);
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Timer1.attachInterrupt(isr);
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}
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void Hardware::resetSingleCallback(int duration) {
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if (duration==0) Timer1.stop();
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else Timer1.initialize(duration);
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