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Android Development with Kotlin
Android Development with Kotlin

Android Development with Kotlin: Enhance your skills for Android development using Kotlin

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Profile Icon Marcin Moskala Profile Icon Igor Wojda
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Profile Icon Marcin Moskala Profile Icon Igor Wojda
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Android Development with Kotlin

Laying a Foundation

This chapter is largely devoted to the fundamental building blocks that are core elements of the Kotlin programming language. Each one may seem insignificant by itself, but combined together, they create really powerful language constructs. We will discuss the Kotlin type system that introduces strict null safety and smart casts. Also, we will see a few new operators in the JVM world, and many improvements compared to Java. We will also present new ways to handle application flows and deal with equality in a unified way.

In this chapter, we will cover the following topics:

  • Variables, values, and constants
  • Type inference
  • Strict null safety
  • Smart casts
  • Kotlin data types
  • Control structures
  • Exceptions handling

Variables

In Kotlin, we have two types of variables: var and val. The first one, var, is a mutable reference (read-write) that can be updated after initialization. The var keyword is used to define a variable in Kotlin. It is equivalent to a normal (non-final) Java variable. If our variable needs to change at some point, we should declare it using the var keyword. Let's look at an example of a variable declaration:

    fun main(args: Array<String>) { 
        var fruit: String =  "orange" //1 
        fruit  = "banana" //2 
    } 
  1. Create a fruit variable and initialize it with the vale of the orange variable.
  2. Reinitialize the fruit variable with the value of the banana variable.

The second type of variable is a read-only reference. This type of variable cannot be reassigned after initialization.

The val keyword can contain...

Type inference

As we saw in previous examples, unlike Java, the Kotlin type is defined after the variable name:

    var title: String 

At first glance, this may look strange to Java developers, but this construct is a building block of a very important feature of Kotlin called type inference. Type inference means that the compiler can infer type from context (the value of an expression assigned to a variable). When variable declaration and initialization is performed together (single line), we can omit the type declaration. Let's look at the following variable definition:

    var title: String = "Kotlin" 

The type of the title variable is String, but do we really need an implicit type declaration to determine variable type? On the right side of the expression, we have a string, Kotlin and we are assigning it to a variable, title, defined on the left...

Strict null safety

According to Agile Software Assessment (http://p3.snf.ch/Project-144126) research, a missing null check is the most frequent pattern of bugs in Java systems. The biggest source of errors in Java is NullPointerExceptions. It's so big that speaking at a conference in 2009, Sir Tony Hoare apologized for inventing the null reference, calling it a billion-dollar mistake (https://en.wikipedia.org/wiki/Tony_Hoare).

To avoid NullPointerException, we need to write defensive code that checks if an object is null before using it. Many modern programming languages, including Kotlin, made steps to convert runtime errors into compile time errors to improve programming language safety. One of the ways to do it in Kotlin is by adding nullability safeness mechanisms to language type systems. This is possible because the Kotlin type system distinguishes between references...

Nullability and Java

We know that Kotlin requires us to explicitly define references that can hold null values. Java on the other hand is much more lenient about nullability, so we may wonder how Kotlin handles types coming from Java (basically the whole Android SDK and libraries written in Java). Whenever possible, the Kotlin compiler will determine type nullability from the code and represent types as actual nullable or non-nullable types using nullability annotations.

The Kotlin compiler supports several flavors of nullability annotations, including:
  • Android (com.android.annotations and android.support.annotations)
  • JetBrains (@Nullable and @NotNull from the org.jetbrains.annotations package)
  • JSR-305 (Javax.annotation)
We can find the full list in the Kotlin compiler source code (https://github.com/JetBrains/kotlin/blob/master/core/descriptor.loader.Java/src/org/jetbrains...

Casts

The casting concept is supported by many programming languages. Basically, casting is a way to convert an object of one particular type into another type. In Java, we need to cast an object explicitly before accessing its member, or cast it and store it in the variable of the casted type. Kotlin simplifies concept of casting and moves it to the next level by introducing smart casts.

In Kotlin, we can perform a few types of cast:

  • Cast objects to different types explicitly (safe cast operator)
  • Cast objects to different types, or nullable types to non-nullable types, implicitly (smart cast mechanism)

Safe/unsafe cast operator

In strongly typed languages, such as Java or Kotlin, we need to convert values from one type...

Variables


In Kotlin, we have two types of variables: var and val. The first one, var, is a mutable reference (read-write) that can be updated after initialization. The var keyword is used to define a variable in Kotlin. It is equivalent to a normal (non-final) Java variable. If our variable needs to change at some point, we should declare it using the var keyword. Let's look at an example of a variable declaration:

    fun main(args: Array<String>) { 
        var fruit: String =  "orange" //1 
        fruit  = "banana" //2 
    } 
  1. Create a fruit variable and initialize it with the vale of the orange variable.
  2. Reinitialize the fruit variable with the value of the banana variable.

The second type of variable is a read-only reference. This type of variable cannot be reassigned after initialization.

Note

The val keyword can contain a custom getter, so technically it can return different objects on each access. In other words, we can't guarantee that the reference to the underlying object is...

Type inference


As we saw in previous examples, unlike Java, the Kotlin type is defined after the variable name:

    var title: String 

At first glance, this may look strange to Java developers, but this construct is a building block of a very important feature of Kotlin called type inference. Type inference means that the compiler can infer type from context (the value of an expression assigned to a variable). When variable declaration and initialization is performed together (single line), we can omit the type declaration. Let's look at the following variable definition:

    var title: String = "Kotlin" 

The type of the title variable is String, but do we really need an implicit type declaration to determine variable type? On the right side of the expression, we have a string, Kotlin and we are assigning it to a variable, title, defined on the left-hand side of the expression.

We specified a variable type as String, but it was obvious, because this is the same type as the type of assigned expression...

Strict null safety


According to Agile Software Assessment(http://p3.snf.ch/Project-144126) research, a missing null check is the most frequent pattern of bugs in Java systems. The biggest source of errors in Java is NullPointerExceptions. It's so big that speaking at a conference in 2009, Sir Tony Hoare apologized for inventing the null reference, calling it a billion-dollar mistake (https://en.wikipedia.org/wiki/Tony_Hoare).

To avoid NullPointerException, we need to write defensive code that checks if an object is null before using it. Many modern programming languages, including Kotlin, made steps to convert runtime errors into compile time errors to improve programming language safety. One of the ways to do it in Kotlin is by adding nullability safeness mechanisms to language type systems. This is possible because the Kotlin type system distinguishes between references that can hold null (nullable references) and those that cannot (non-nullable references). This single feature of Kotlin...

Nullability and Java


We know that Kotlin requires us to explicitly define references that can hold null values. Java on the other hand is much more lenient about nullability, so we may wonder how Kotlin handles types coming from Java (basically the whole Android SDK and libraries written in Java). Whenever possible, the Kotlin compiler will determine type nullability from the code and represent types as actual nullable or non-nullable types using nullability annotations.

Note

The Kotlin compiler supports several flavors of nullability annotations, including:

  • Android (com.android.annotations and android.support.annotations)
  • JetBrains (@Nullable and @NotNull from the org.jetbrains.annotations package)
  • JSR-305 (Javax.annotation)

We can find the full list in the Kotlin compiler source code (https://github.com/JetBrains/kotlin/blob/master/core/descriptor.loader.Java/src/org/jetbrains/kotlin/load/Java/JvmAnnotationNames.kt).

We have seen this previously in Activity's onCreate method, where the savedInstanceState...

Casts


The casting concept is supported by many programming languages. Basically, casting is a way to convert an object of one particular type into another type. In Java, we need to cast an object explicitly before accessing its member, or cast it and store it in the variable of the casted type. Kotlin simplifies concept of casting and moves it to the next level by introducing smart casts.

In Kotlin, we can perform a few types of cast:

  • Cast objects to different types explicitly (safe cast operator)
  • Cast objects to different types, or nullable types to non-nullable types, implicitly (smart cast mechanism)

Safe/unsafe cast operator

In strongly typed languages, such as Java or Kotlin, we need to convert values from one type to another explicitly using the cast operator. A typical casting operation is taking an object of one particular type and turning it into another object type that is its supertype (upcasting), subtype (downcasting), or interface. Let's start with a small reminder of casting that...

Primitive data types


In Kotlin, everything is an object (reference type, not primitive type). We don't find primitive types, like the ones we can use in Java. This reduces code complexity. We can call methods and properties on any variable. For example, this is how we can convert the Int variable to a Char:

    var code: Int = 75 
    code.toChar() 

Usually (whenever it is possible), under the hood types such as Int, Long, or Char are optimized (stored as primitive types) but we can still call methods on them as on any other objects.

By default, the Java platform stores numbers as JVM primitive types, but when a nullable number reference (for example, Int?), is needed or generics are involved, Java uses boxed representation. Boxing means wrapping a primitive type into a corresponding boxed primitive type. This means that the instance behaves as an object. Examples of Java boxed representations of primitive types are int versus Integer or a long versus Long Since Kotlin is compiled to JVM bytecode...

Composite data types


Let's discuss more complex types built into Kotlin. Some data types have major improvements compared to Java, while others are totally new.

Strings

Strings in Kotlin behave in a similar way as in Java, but they have a few nice improvements.

To start to access characters at a specified index, we can use the indexing operator and access characters the same way we access array elements:

    val str = "abcd" 
    println (str[1]) // Prints: b 

We also have access to various extensions defined in the Kotlin standard library, which make working with strings easier:

    val str = "abcd" 
    println(str.reversed()) // Prints: dcba 
    println(str.takeLast(2)) // Prints: cd 
    println("john@test.com".substringBefore("@")) // Prints: john 
    println("john@test.com".startsWith("@")) // Prints: false 

This is exactly the same String class as in Java, so these methods are not part of String class. They were defined as extensions. We will learn more about extensions in Chapter 7, Extension...

Statements versus expressions


Kotlin utilizes expressions more widely than Java, so it is important to know the difference between a statement and an expression. A program is basically a sequence of statements and expressions. An expression produces a value, which can be used as part of another expression, variable assignment, or function parameter. An expression is a sequence of one or more operands (data that is manipulated) and zero or more operators (a token that represents a specific operation) that can be evaluated to a single value:

Let's review some examples of expressions from Kotlin:

Expression (produces a value)

Assigned value

Expression of type

a = true

true

Boolean

a = "foo" + "bar"

"foobar"

String

a = min(2, 3)

2

Integer

a = computePosition().getX()

Value returned by the getX method

Integer

 

Statements, on the other hand, perform an action and cannot be assigned to a variable, because they simply don't have a value. Statements can contain language keywords that are used to define classes (class...

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Key benefits

  • • Leverage specific features of Kotlin to ease Android application development
  • • Write code based on both object oriented and functional programming to build robust applications
  • • Filled with various practical examples so you can easily apply your knowledge to real world scenarios
  • • Identify the improved way of dealing with common Java patterns

Description

Nowadays, improved application development does not just mean building better performing applications. It has become crucial to find improved ways of writing code. Kotlin is a language that helps developers build amazing Android applications easily and effectively. This book discusses Kotlin features in context of Android development. It demonstrates how common examples that are typical for Android development, can be simplified using Kotlin. It also shows all the benefits, improvements and new possibilities provided by this language. The book is divided in three modules that show the power of Kotlin and teach you how to use it properly. Each module present features in different levels of advancement. The first module covers Kotlin basics. This module will lay a firm foundation for the rest of the chapters so you are able to read and understand most of the Kotlin code. The next module dives deeper into the building blocks of Kotlin, such as functions, classes, and function types. You will learn how Kotlin brings many improvements to the table by improving common Java concepts and decreasing code verbosity. The last module presents features that are not present in Java. You will learn how certain tasks can be achieved in simpler ways thanks to Kotlin. Through the book, you will learn how to use Kotlin for Android development. You will get to know and understand most important Kotlin features, and how they can be used. You will be ready to start your own adventure with Android development with Kotlin.

Who is this book for?

This book is for developers who have a basic understanding of Java language and have 6-12 months of experience with Android development and developers who feel comfortable with OOP concepts.

What you will learn

  • ? Run a Kotlin application and understand the integration with Android Studio
  • ? Incorporate Kotlin into new/existing Android Java based project
  • ? Learn about Kotlin type system to deal with null safety and immutability
  • ? Define various types of classes and deal with properties
  • ? Define collections and transform them in functional way
  • ? Define extensions, new behaviours to existing libraries and Android framework classes
  • ? Use generic type variance modifiers to define subtyping relationship between generic types
  • ? Build a sample application
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Table of Contents

9 Chapters
Beginning Your Kotlin Adventure Chevron down icon Chevron up icon
Laying a Foundation Chevron down icon Chevron up icon
Playing with Functions Chevron down icon Chevron up icon
Classes and Objects Chevron down icon Chevron up icon
Functions as First-Class Citizens Chevron down icon Chevron up icon
Generics Are Your Friends Chevron down icon Chevron up icon
Extension Functions and Properties Chevron down icon Chevron up icon
Delegates Chevron down icon Chevron up icon
Making Your Marvel Gallery Application Chevron down icon Chevron up icon

Customer reviews

Rating distribution
Full star icon Full star icon Half star icon Empty star icon Empty star icon 2.6
(5 Ratings)
5 star 20%
4 star 0%
3 star 20%
2 star 40%
1 star 20%
Mikolaj Leszczynski Sep 21, 2017
Full star icon Full star icon Full star icon Full star icon Full star icon 5
Excellent book. This is for Android developers who would like to learn how to apply Kotlin paradigms to typical Android development patterns. Makes for a very practical approach to teaching Kotlin.
Amazon Verified review Amazon
Amazon Customer Oct 07, 2017
Full star icon Full star icon Full star icon Empty star icon Empty star icon 3
Good explanation of Kotlin and advantages over Java. I expected more Android references given the book title so that aspect is a little underwhelming since I am primarily concerned with learning Kotlin for Android development. Though, the last chapter is dedicated to building a gallery app (which I've yet to reach).English is not great, and the grammatical errors don't help, but it is still readable overall. Definitely seems like a number of the issues should have been caught prior to publishing.Overall, so far, I am pleased with the content. My rating may change from a 3 star once I finish reading the entire book.
Amazon Verified review Amazon
Bob Mann Sep 30, 2017
Full star icon Full star icon Empty star icon Empty star icon Empty star icon 2
I have made it halfway through this book and only because I worked through a much better book before I read this one.Android Studio Development Essentials by Neil Smyth is an example of a GOOD Android Studio Tutorial.Android Development with Kotlin by Marcin Moskala is an example of a BAD Android Studio Tutorial.When I see a code example " println(Text) " I know the author is not using Android Studio.When I see Github listing just code snippets instead of working examples I know the author is not using Android Studio.When I see Github code organized in Chapters and no Chapter numbers in the downloaded book I know the editor did not read all of the content.I can work around the broken english in this book and I really want to learn Kotlin on Android Studio, I guess the only way I will is when Neil Smyth writes a Kotlin version of his Android Studio Development Essentials.
Amazon Verified review Amazon
Ollie C Sep 25, 2017
Full star icon Full star icon Empty star icon Empty star icon Empty star icon 2
The breadth of coverage and touching on Android are valuable and the authors clearly have a great deal of knowledge about Kotlin but the book is severely let down by typos, poor grammar, code sample errors (one defines a class called Snail but instantiates one called Sneil!), duplicated text, images that are unreadable on a Kindle and poor English which is distracting (it's instead of its, sentences missing definite/indefinite articles, missing words, capital letters in the middle of sentences, etc). It's not an exaggeration to say most pages have errors on them, making it incredibly difficult to read and very poor value for money. Even one of the book's chapter *titles* has a glaring typo in it ("View binging" instead of "View binding"!). It's clear this book was not even looked at by a technical book editor. Packt told me they are now editing the book, but why didn't they do this before publishing it? Come on! Although the book does contain some Android examples there are very few. Kotlin in Action is a significantly higher quality book, in which I saw not a single copy error. It also contains Android examples and so I heartily recommend that as an alternative.
Amazon Verified review Amazon
Xolix Sep 14, 2019
Full star icon Empty star icon Empty star icon Empty star icon Empty star icon 1
This is probably the worst book for anyone starting out with Android development and Kotlin. The book is essentially a long list of loosely related details that might come up when working in Kotlin. Maybe there could have been a place for it as reference, but then of course it is already outdated. The one and only project - if one wants to call it that - starts on page 338 and assumes that one has read through the encyclopedic style of some hundred mini-topics. At that pint one then gets to type in reams of xml as the books doesn’t get into layout or other Android Studio related issues and any explanations from this point on are extremely brief or non-existing. Just thoughtless and horrible.
Amazon Verified review Amazon
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Trackable service with delivery to addresses in Australia only.
Delivery time ranges from 7-9 business days for VIC and 8-10 business days for Interstate metro
Delivery time is up to 15 business days for remote areas of WA, NT & QLD.

Premium: Delivery to addresses in Australia only
Trackable delivery to most P. O. Boxes and private residences in Australia within 4-5 days based on the distance to a destination following dispatch.

India:

Premium: Delivery to most Indian addresses within 5-6 business days

Rest of the World:

Premium: Countries in the American continent: Trackable delivery to most countries within 4-7 business days

Asia:

Premium: Delivery to most Asian addresses within 5-9 business days

Disclaimer:
All orders received before 5 PM U.K time would start printing from the next business day. So the estimated delivery times start from the next day as well. Orders received after 5 PM U.K time (in our internal systems) on a business day or anytime on the weekend will begin printing the second to next business day. For example, an order placed at 11 AM today will begin printing tomorrow, whereas an order placed at 9 PM tonight will begin printing the day after tomorrow.


Unfortunately, due to several restrictions, we are unable to ship to the following countries:

  1. Afghanistan
  2. American Samoa
  3. Belarus
  4. Brunei Darussalam
  5. Central African Republic
  6. The Democratic Republic of Congo
  7. Eritrea
  8. Guinea-bissau
  9. Iran
  10. Lebanon
  11. Libiya Arab Jamahriya
  12. Somalia
  13. Sudan
  14. Russian Federation
  15. Syrian Arab Republic
  16. Ukraine
  17. Venezuela