# resulting in a value of 117kms. The engineSize variable is set as 3.1. Hybrid cars require both cells and # cylinders so it will use both functions. car3 = HybridCar() car3.setMake('Toyota Prius') print '\nOur hybrid option is ' + car3.getMake() car3.setColour('Blue') print('The colour is ' + car3.getColour()) car3.setMileage(100) car3.move(17) print('The mileage is ' + str(car3.getMileage())) + 'kms' car3.engineSize = '3.1' print 'The engine size is ' + car3.engineSize car3.setNumberOfFuelCells(2) print('The number of fuel cells is ' + str(car3.getNumberOfFuelCells())) car3.setNumberOfFuelCylinders(1) print('The number of fuel cylinders is ' + str(car3.getNumberOfFuelCylinders())) # Car4 calls the PetrolCar class and performs similar functions as other class'. The colour is red, mileage # is set to 150 and increased by 25 to 175kms. The engine size is set at 2.9. The petrol car is a Toyota Corolla # and has 3 cylinders set as the value for the variable NumberOfFuelCylinders. car4 = PetrolCar() car4.setMake('Toyota Corolla') print '\nOur petrol option is ' + car4.getMake() car4.setColour('Red') print('The colour is: ' + car4.getColour())
class TestHybridCar(unittest.TestCase): def setUp(self): # The HybridCar calls itself using self. self.hybrid_car = HybridCar() def test_HybridCar_fuel_cylinders(self): # Similar to petrol and diesel except default value is 1. The default value is tested as well as 4, 6 # and 3 which all result in true. self.assertEqual(1, self.hybrid_car.getNumberOfFuelCylinders()) self.hybrid_car.setNumberOfFuelCylinders(4) self.assertEqual(4, self.hybrid_car.getNumberOfFuelCylinders()) self.hybrid_car.setNumberOfFuelCylinders(6) self.assertEqual(6, self.hybrid_car.getNumberOfFuelCylinders()) self.hybrid_car.setNumberOfFuelCylinders(3) self.assertEqual(3, self.hybrid_car.getNumberOfFuelCylinders()) def test_HybridCar_fuel_cells(self): # Similar to ElectricCar test_car_fuel_cells. The default value 1 is tested as well as 4 and 2. self.assertEqual(1, self.hybrid_car.getNumberOfFuelCells()) self.hybrid_car.setNumberOfFuelCells(4) self.assertEqual(4, self.hybrid_car.getNumberOfFuelCells()) self.hybrid_car.setNumberOfFuelCells(2) self.assertEqual(2, self.hybrid_car.getNumberOfFuelCells()) def test_HybridCar_mileage_and_move(self): # As in other cases testing the mileage default value. Then entering a value for move to ensure # it moves that amount to test the mileage of a car. The car is moved by 7.7 to make 19.7 moved 0 # output stays the same and lastly setMileage is tested with a value of 15 which is true. self.assertEqual(0, self.hybrid_car.getMileage()) self.hybrid_car.move(12) self.assertEqual(12, self.hybrid_car.getMileage()) self.hybrid_car.move(7.7) self.assertEqual(19.7, self.hybrid_car.getMileage()) self.hybrid_car.move(0) self.assertEqual(19.7, self.hybrid_car.getMileage()) self.hybrid_car.setMileage(15) self.assertEqual(15, self.hybrid_car.getMileage()) def test_HybridCar_make(self): # Testing make function for HybridCar. self.assertEqual(' ', self.hybrid_car.getMake()) self.hybrid_car.setMake('Chevrolet Malibu') self.assertEqual('Chevrolet Malibu', self.hybrid_car.getMake()) self.hybrid_car.setMake('Chevrolet Cruz') self.assertEqual('Chevrolet Cruz', self.hybrid_car.getMake()) def test_HybridCar_engineSize(self): # Testing engineSize for HybridCar. self.assertEqual(' ', self.hybrid_car.getEngineSize()) self.hybrid_car.setEngineSize(1.6) self.assertEqual(1.6, self.hybrid_car.getEngineSize()) self.hybrid_car.setEngineSize(1.8) self.assertEqual(1.8, self.hybrid_car.getEngineSize()) def test_HybridCar_colour_and_paint(self): # Testing colour and paint for HybridCar. self.assertEqual(' ', self.hybrid_car.getColour()) self.hybrid_car.paint('red') self.assertEqual('red', self.hybrid_car.getColour()) self.hybrid_car.setColour('light blue') self.assertEqual('light blue', self.hybrid_car.getColour())