PWM Constructor Modes

#include <iostream>
using namespace std;

// Write your PWMController class here
class PWMController {
private:

    int frequency;
    int duty;
    bool enabled;

public:
    PWMController(int freq)
        : frequency(freq),
          duty(0),
          enabled{false}{

          }
    PWMController(int freq, int dutyCycle)
        : frequency(freq),
          duty(dutyCycle),
          enabled{true}{
            if(duty>100){duty = 100;}
            if(duty<0){duty = 0;}
          }

    void setDuty(int d){
        if(d>100){duty = 100;}
        if(d<0){duty = 0;}
        duty = d;
    }

    void disable(){
        enabled=false;
    }

    void print(){
         cout<<"F="<<frequency<<" D="<<duty<<" EN="<<enabled;
    }


};


int main() {
    int mode;
    cin >> mode;

    PWMController pwm(0); // temporary placeholder

    if (mode == 1) {
        int f;
        cin >> f;
        pwm = PWMController(f);
    }
    else {
        int f, d;
        cin >> f >> d;
        pwm = PWMController(f, d);
    }

    int x;
    cin >> x;

    if (x == -1)
        pwm.disable();
    else
        pwm.setDuty(x);

    pwm.print();
    return 0;
}

Solving Approach

 

 

 

 

 

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Input

1 1000 50

Expected Output

F=1000 D=50 EN=0