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Hello, Jim.
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In this lesson, we are going to learn more about one of the key principles of the object oriented programming
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approach.
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I'm talking about inheritance.
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And they will talk not only about inheritance.
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Well, on super keyword and you operator instance of I will show you how we can extend classes and what
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rules should be followed during inheritance.
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So let's start.
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I believe you remember theoretical part which we discussed in lesson about inheritance.
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So now it is time for practical code examples demo to understand this topic better.
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I always try to create real life example for you so that you could understand how this works for real
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in this lesson.
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Imagine that you have product type in your program.
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I didn't create too many fields to not distract attention from inheritance topic.
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Just imagine that product can have multiple fields and methods.
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And we also have the phone type.
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Phone is also a product in our online shop.
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It will have similar fields and behavior as product has.
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But besides that, it has also some phone specific behavior like ring method, for example.
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Now let's create phone object I a product variable and initialize it with foreign object.
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Take into account for an object is also a type product and you can see that our product variable has
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own methods that are declared in product type.
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I have said gather and calculate remaining amount method which is not declared in phone but declared
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in product.
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So the idea of inheritance is to describe new types based on existing one from technical side.
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This allows us to reuse already written code, which is also pretty cool because let's imagine you need
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to change the logic how remaining amount in stock is calculated.
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Instead of changing this method in all classes where this method is used, I can just do change in one
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place in product class and behaviour will become different in old child classes.
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And you also see that foreign object doesn't have name field, but somehow I can set the value for name
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property of the form.
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That is because inheritance of this field from product object.
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OK, but let's try to ring right now.
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Unfortunately, we have compilation error because Renk method is not defined for the type product,
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but we see here that we created for an object and we still don't have that Renk method available.
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Why?
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Because Java is not mahzarin.
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What object will be here in this line during the runtime?
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You can initialize the variable with any object of this type and Java doesn't want to guess what object
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is there for real.
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What Java knows that in case code is compiler, that means object which was assigned to this variable
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has the same interface as this type for sure.
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That's why we don't see any matters from form type here, because we have variable of type product.
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When I create variable or form that I can invoke Renk method without compilation error.
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But what if my class or method works with product type and I want to call Remarque method?
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I will be able to do that only in case during the runtime.
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I have phone object here.
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But how I can understand this now I will show you a new keyword and operator which you will be able
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to use in your programs.
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Here is an instance of operator.
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It allows you to check the type consistency with the object.
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It is a binary operator which works with two operands.
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Let me show you how you can use it if object behind the product variable.
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This one is instance of phone type.
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The result will be true in terms of returns.
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Is a true or false and if instance of returns true, I can cast this variable to type the remember how
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Wikus primitive types.
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We can just reference types in a similar way.
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Right.
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Phone and variable name.
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Now put the type name in parentheses and name of the variable you want to cast.
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Now you can invoke Renk method instance of the return false in case variable reference to object is
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incompatible with the type you specified as a second operand.
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OK, you know what is instance of and when you can use it.
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Let's proceed with inheritance topic in your child class.
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You always have a reference to a parent class.
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You might want to have the reference to the parent class, for example, to call some parent methods.
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Let's take a look here.
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Product Class has a message that returns the least of all variant products associated with the current
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product.
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And our phone object overrides this behavior and throws and supports the separation exception.
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This exception indicates that this behavior is not supported in this class.
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Later in this course, we will learn that this implementation violates one of the design principles
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in the object oriented programming.
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But you would face with similar cases many in.
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Times, believe me, and now what will happen if in another method calculate the amount of variance
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I will call least variance method of this object will be called and program will stop execution because
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of the exception?
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Let me run this program to show you this.
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What do you have to do right now?
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You already know that in each class you have reference to a parent class who is super keyword.
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So let's call math at least reference not from this class, but let's call method list variants of the
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parent class.
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This one just right super.
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This is a reference to the parent type Dorte and invoke the same method.
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What we have now left me around this program one more time.
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We won't have any error because this method was called you can always use super keyword to reference
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methods or properties of a parent class.
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Now imagine the next scenario.
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Imagine you don't have the full constructor in your parent object because you can create products only
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with names.
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How this will impact your phone that you're going to have compilation error.
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Why?
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Because the grade child object GBM invokes constructor of all parent classes and now you can call constructor
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of parent classes because it doesn't know what should be passed.
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As a constructor argument, the full constructor often looks like this.
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So what we need to do to remove this compilation error, we need to explicitly call constructor of parent
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class and pass a string parameter to it that's type super parentheses and pass some string argument
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to it.
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Here we call parent constructor and you see that now compilation error is gone.
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Now Joram will be able to create an object of the form type one more important common here call of the
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parent constructor always should go first in child constructor.
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I mean you can't call any other methods before super.
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Here, let me show you.
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If I write here some code, it doesn't matter what exactly are right here.
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Let me cancel.
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Output will have again compilation error.
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You need to remember that invocation of Ben constructor and using of super keyword should always go
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first in shall constructor.
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I will make a post now.
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Is it clear if this is clear, let's move on.
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I told you that OP is fun.
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Now you know that to create a child's object constructor of a parent type is called what else happens
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during child object initialization.
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Here is a quick exercise for you that will help you to remember for the rest of your lives what happens
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during child object construction.
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Here is the code of our exercise.
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So let's start.
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We have parent type here.
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You can see static initialization lock installation, lock constructor.
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We have console output everywhere here and it's clearly specified that this output belongs to the parent
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type and we have child types that extends parent class.
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The child class has the same things that parent has static, initialization block, initialization lock
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and constructor.
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And you see the text and console output is different.
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The question is what will be printed to console when I will create child object?
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And another question, what will be printed to console when I will create child object the second time?
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Press pause and try to answer this question.
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OK, let me answer this.
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I will run the program and we will investigate console output and let's see what we have here.
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Static initialization block of the parent is executed and after that static installation lock of the
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child type is executed.
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Why static blocks are executed when classes uploaded into GBM parent class was uploaded first and after
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that child class was uploaded after the JVM wants to initialize parent fields first.
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That's why it executes parent installation block.
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And after that parent constructor and only after that JVM starts to create child object and executes
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child and installation work and child constructor home.
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This example is clear.
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What happens when I try to create child objects a second time?
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Everything the same beside the execution of static initialization locks.
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Why?
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Because everything what is followed by static keyword, including initialization blocks, is associated
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not with the object of this class, but with the class itself.
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So when classes are uploaded into GBM, these blocks are executed.
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They won't be executed two times in a row home.
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Now with this example, it has become clearer what is initialization order during the construction of
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a giant object.
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The last thing you need to know about inheritance is that in Java, multiple inheritance is not supported
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that.
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Means you can't define new type on the basis of two or more opposite types after extensive keyword.
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You can specify only one class, but in some other languages, multiple inheritance is supported.
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That's all what we have in our agenda for today.
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Let's recap what we have learned today.
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We learned what inheritance is and how we can extend the time.
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Now, you know, two more key words, super and instance of you learn some specific constraints while
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extending classes.
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And today you learned what initialization order is of new objects that is extended from another class.
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That's all.
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Thank you for your attention and see you in the next lesson.
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