10 Commits
8 changed files with 246 additions and 154 deletions
+47 -110
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@@ -1,126 +1,63 @@
package org;
import org.behavior.Serviceable;
import org.model.*;
import org.util.VehicleInspector;
public class Main {
public static void main(String[] args) {
// ============================================================
// TODO 1:
// Create one instance of each vehicle type:
// - ElectricCar
// - GasCar
// - SportsCar
//
// Requirements:
// • Use the constructors you created in each class.
// • Provide realistic values (brand, model, year, mileage, etc.).
// • Store them in variables such as:
// ElectricCar tesla = new ElectricCar(...);
// ============================================================
//Todo 1
ElectricCar tesla = new ElectricCar(
"Tesla", "Model S", 2022, 1000,
100, 550, 50
);
GasCar toyota = new GasCar(
"Toyota", "Corolla", 2018, 85000,
5, 50, "Petrol"
);
SportsCar ferrari = new SportsCar(
"Ferrari", "F8 Tributo", 2021, 12000,
2, 3.9, "oil", 710
);
HybridCar fun = new HybridCar(
"Aodi", "fun", 2026, 1000,
5, 600, 40, 60,
"oil"
);
//TODO 2
Vehicle[] vehicles = {tesla, toyota, ferrari, fun};
// ============================================================
// TODO 2:
// Create an array of Vehicle:
// Vehicle[] vehicles = { ... };
//
// This array MUST contain the objects created above.
// This demonstrates **polymorphism** because all different
// subclasses (ElectricCar, GasCar, SportsCar) are stored
// as their parent type (Vehicle).
// ============================================================
// ============================================================
// TODO 3:
// Loop through the Vehicle[] array and:
// • Call v.basicInfo();
// • Print a blank line after each.
//
// Purpose:
// Demonstrate that all subclasses share the same Vehicle
// behavior and can call inherited methods.
// ============================================================
// ============================================================
// TODO 4:
// Use VehicleInspector to inspect each vehicle:
//
// VehicleInspector.inspect(v);
//
// Purpose:
// • Demonstrate the use of `instanceof`
// • Show subclassspecific inspection messages
// ============================================================
// ============================================================
// TODO 5:
// Create an array of Serviceable:
// Serviceable[] serviceables = { ... };
//
// This demonstrates **interfacebased polymorphism**.
// Every Car subtype implements Serviceable.
//
// IMPORTANT:
// • You must cast to Vehicle when needed:
// Vehicle v = (Vehicle) s;
//
// ============================================================
// ============================================================
// TODO 6:
// Loop through the Serviceable[] array:
//
// Steps inside loop:
//
// 1. Cast the current object to Vehicle:
// Vehicle v = (Vehicle) s;
//
// 2. Check:
// if (s.needsService(v)) { ... }
//
// 3. If true:
// - Print a message showing brand + model
// - Call s.performService();
//
// 4. Otherwise:
// - Print that the car does not need service
//
// Add blank lines between each item for readability.
// ============================================================
// ============================================================
// TODO 7 (Optional):
// After everything is done, print a final message:
//
// System.out.println("=== Workshop Completed ===");
//
// ============================================================
//TODO 3
for(int i = 0; i<4; i++) {
vehicles[i].basicInfo();
System.out.println(" ");
}
//TODO 4
for(int i = 0; i<4; i++) {
VehicleInspector.inspect(vehicles[i]);
}
//TODO 5
Serviceable[] serviceables = {tesla, toyota, ferrari, fun};
//TODO 6
for(int i = 0; i<4; i++) {
Vehicle v = (Vehicle) serviceables[i];
if (serviceables[i].needsService(v)) {
System.out.println(((Vehicle)serviceables[i]).getBrand() + " " + ((Vehicle)serviceables[i]).getModel());
serviceables[i].performService();
}
else {System.out.println("The car doesn't need service!");}
System.out.println(" ");
}
//TODO 7
System.out.println("=== Workshop Completed ===");
}
}
+21 -16
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@@ -17,25 +17,30 @@ public abstract class Car extends Vehicle implements Serviceable {
public Car(String brand, String model, int year,
double mileage, int seats) {
// TODO: Call super constructor
super(brand, model, year, mileage);
this.seats = seats;
}
// TODO: Override getEnergyType() → return "Unknown"
@Override
abstract String getEnergyType();
// TODO: Override showDetails()
// Print brand, model, year, mileage, and number of seats
@Override
public void showDetails() {
System.out.println(getBrand());
System.out.println(getModel());
System.out.println(getYear());
System.out.println(getMileage());
System.out.println(seats);
}
/*
* Implement Serviceable methods:
*
* needsService(Vehicle v):
* - Check the mileage of the current car
* - If mileage > 10000 return true
* - Otherwise return false
*
* performService():
* - Print: "General car service completed"
*/
//Implements:
public boolean needsService(Vehicle v) {
double mileage = v.getMileage();
return (mileage > 10000);
}
public void performService() {
System.out.println("General car service completed");
}
}
+29 -7
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@@ -27,13 +27,35 @@ public class ElectricCar extends Car implements Chargeable {
this.chargeLevel = chargeLevel;
}
// TODO: Override getEnergyType() → return "Electric"
@Override
public String getEnergyType() {return "Electric";}
// TODO: Override showDetails()
// Call super.showDetails()
// Print battery capacity and charge level
//Implement Chargeable
public void charge(double amount) {
if (amount <= 0) {
System.out.println("Invalid amount!");
return;
}
if (chargeLevel + amount > 100) {System.out.println("Invalid amount!");}
else {System.out.println("Refuelable!");}
}
// TODO: Implement charge(double amount)
// Validate negative
// Cap at 100
@Override
public void showDetails() {
super.showDetails();
System.out.println(batteryCapacity);
System.out.println(chargeLevel);
}
@Override
public boolean needsService(Vehicle v) {
double mileage = v.getMileage();
return (mileage > 8000);
}
@Override
public void performService() {
System.out.println("Battery system checked");
chargeLevel = 100;
}
}
+31 -7
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@@ -27,13 +27,37 @@ public class GasCar extends Car implements Refuelable {
this.fuelType = fuelType;
}
// TODO: Override getEnergyType() → return fuelType + " (Gas)"
@Override
public String getEnergyType() {
return (fuelType + " (Gas)");
}
// TODO: Implement refuel(double amount)
// Validate amount
// Cap at 100
//Implement Refuelable
public void refuel(double amount) {
if (amount <= 0) {
System.out.println("Invalid amount!");
return;
}
if (fuelLevel + amount > 100) {System.out.println("Invalid amount!");}
else {System.out.println("Refuelable!");}
}
// TODO: Override showDetails()
// Call super.showDetails()
// Print fuel level and fuel type
@Override
public void showDetails() {
super.showDetails();
System.out.println(fuelLevel);
System.out.println(fuelType);
}
@Override
public boolean needsService(Vehicle v) {
double mileage = v.getMileage();
return (mileage > 12000);
}
@Override
public void performService() {
System.out.println("Engine oil changed");
fuelLevel = 100;
}
}
+71
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@@ -0,0 +1,71 @@
package org.model;
import org.behavior.Chargeable;
import org.behavior.Refuelable;
public class HybridCar extends Car implements Chargeable, Refuelable {
private int batteryCapacity;
private double chargeLevel;
private double fuelLevel;
private String fuelType;
public HybridCar(String brand, String model, int year,
double mileage, int seats,
int batteryCapacity, double chargeLevel,
double fuelLevel, String fuelType)
{
super(brand, model, year, mileage, seats);
this.batteryCapacity = batteryCapacity;
this.chargeLevel = chargeLevel;
this.fuelLevel = fuelLevel;
this.fuelType = fuelType;
}
@Override
public String getEnergyType() {
return ("Hybrid (Gas and Electric)");
}
//Implement Refuelable
public void refuel(double amount) {
if (amount <= 0) {
System.out.println("Invalid amount!");
return;
}
if (fuelLevel + amount > 100) {System.out.println("Invalid amount!");}
else {System.out.println("Refuelable!");}
}
//Implement Chargeable
public void charge(double amount) {
if (amount <= 0) {
System.out.println("Invalid amount!");
return;
}
if (chargeLevel + amount > 100) {System.out.println("Invalid amount!");}
else {System.out.println("Refuelable!");}
}
@Override
public void showDetails() {
super.showDetails();
System.out.println(fuelLevel);
System.out.println(fuelType);
System.out.println(batteryCapacity);
System.out.println(chargeLevel);
}
@Override
public boolean needsService(Vehicle v) {
double mileage = v.getMileage();
return (mileage > 10000);
}
@Override
public void performService() {
System.out.println("Engine oil changed and battery system checked");
chargeLevel = 100;
fuelLevel = 100;
}
}
+16 -3
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@@ -24,7 +24,20 @@ public class SportsCar extends GasCar {
this.zeroToHundred = zeroToHundred;
}
// TODO: Override showDetails()
// Call super.showDetails()
// Print acceleration time
@Override
public void showDetails() {
super.showDetails();
System.out.println(zeroToHundred);
}
@Override
public boolean needsService(Vehicle v) {
double mileage = v.getMileage();
return (mileage > 5000);
}
@Override
public void performService() {
System.out.println("High-performance brake system checked");
}
}
+24 -5
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@@ -20,13 +20,32 @@ public abstract class Vehicle {
this.mileage = mileage;
}
// TODO: Create getters for all fields
public String getBrand() {
return brand;
}
// TODO: Implement addMileage(double km)
// If km is negative → print error
// Otherwise increase mileage
public String getModel() {
return model;
}
// TODO: Declare abstract method getEnergyType()
public int getYear() {
return year;
}
public double getMileage() {
return mileage;
}
public void addMileage(double km) {
if (km<0) {
System.out.println("The mileage can't be negative!");
}
else {
mileage += km;
}
}
abstract String getEnergyType();
public void basicInfo() {
System.out.println(
+7 -6
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@@ -1,6 +1,9 @@
package org.util;
import org.*;
import org.model.Car;
import org.model.ElectricCar;
import org.model.GasCar;
import org.model.SportsCar;
import org.model.Vehicle;
/*
@@ -11,12 +14,10 @@ import org.model.Vehicle;
public class VehicleInspector {
public static void inspect(Vehicle v) {
v.basicInfo();
// TODO:
// If ElectricCar → print "Check battery system"
// If SportsCar → print "Check brakes and performance"
// If GasCar → print "Check engine and oil"
if (v instanceof SportsCar) {System.out.println("Check brakes and performance");}
else if (v instanceof ElectricCar) {System.out.println("Check battery system");}
else if (v instanceof GasCar) {System.out.println("Check engine and oil");}
}
}