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Android Studio 4.1 Development Essentials – Java Edition

You're reading from  Android Studio 4.1 Development Essentials – Java Edition

Product type Book
Published in May 2021
Publisher Packt
ISBN-13 9781801815161
Pages 810 pages
Edition 1st Edition
Languages
Author (1):
Neil Smyth Neil Smyth
Profile icon Neil Smyth

Table of Contents (88) Chapters

1. Introduction 2. Setting up an Android Studio Development Environment 3. Creating an Example Android App in Android Studio 4. Creating an Android Virtual Device (AVD) in Android Studio 5. Using and Configuring the Android Studio AVD Emulator 6. A Tour of the Android Studio User Interface 7. Testing Android Studio Apps on a Physical Android Device 8. The Basics of the Android Studio Code Editor 9. An Overview of the Android Architecture 10. The Anatomy of an Android Application 11. An Overview of Android View Binding 12. Understanding Android Application and Activity Lifecycles 13. Handling Android Activity State Changes 14. Android Activity State Changes by Example 15. Saving and Restoring the State of an Android Activity 16. Understanding Android Views, View Groups and Layouts 17. A Guide to the Android Studio Layout Editor Tool 18. A Guide to the Android ConstraintLayout 19. A Guide to using ConstraintLayout in Android Studio 20. Working with ConstraintLayout Chains and Ratios in Android Studio 21. An Android Studio Layout Editor ConstraintLayout Tutorial 22. Manual XML Layout Design in Android Studio 23. Managing Constraints using Constraint Sets 24. An Android ConstraintSet Tutorial 25. A Guide to using Apply Changes in Android Studio 26. An Overview and Example of Android Event Handling 27. Android Touch and Multi-touch Event Handling 28. Detecting Common Gestures using the Android Gesture Detector Class 29. Implementing Custom Gesture and Pinch Recognition on Android 30. An Introduction to Android Fragments 31. Using Fragments in Android Studio - An Example 32. Modern Android App Architecture with Jetpack 33. An Android Jetpack ViewModel Tutorial 34. An Android Jetpack LiveData Tutorial 35. An Overview of Android Jetpack Data Binding 36. An Android Jetpack Data Binding Tutorial 37. An Android ViewModel Saved State Tutorial 38. Working with Android Lifecycle-Aware Components 39. An Android Jetpack Lifecycle Awareness Tutorial 40. An Overview of the Navigation Architecture Component 41. An Android Jetpack Navigation Component Tutorial 42. Creating and Managing Overflow Menus on Android 43. An Introduction to MotionLayout 44. An Android MotionLayout Editor Tutorial 45. A MotionLayout KeyCycle Tutorial 46. Working with the Floating Action Button and Snackbar 47. Creating a Tabbed Interface using the TabLayout Component 48. Working with the RecyclerView and CardView Widgets 49. An Android RecyclerView and CardView Tutorial 50. A Layout Editor Sample Data Tutorial 51. Working with the AppBar and Collapsing Toolbar Layouts 52. An Android Studio Master/Detail Flow Tutorial 53. An Overview of Android Intents 54. Android Explicit Intents – A Worked Example 55. Android Implicit Intents – A Worked Example 56. Android Broadcast Intents and Broadcast Receivers 57. A Basic Overview of Threads and AsyncTasks 58. An Overview of Android Started and Bound Services 59. Implementing an Android Started Service – A Worked Example 60. Android Local Bound Services – A Worked Example 61. Android Remote Bound Services – A Worked Example 62. An Android Notifications Tutorial 63. An Android Direct Reply Notification Tutorial 64. Foldable Devices and Multi-Window Support 65. An Overview of Android SQLite Databases 66. The Android Room Persistence Library 67. An Android TableLayout and TableRow Tutorial 68. An Android Room Database and Repository Tutorial 69. Accessing Cloud Storage using the Android Storage Access Framework 70. An Android Storage Access Framework Example 71. Video Playback on Android using the VideoView and MediaController Classes 72. Android Picture-in-Picture Mode 73. An Android Picture-in-Picture Tutorial 74. Making Runtime Permission Requests in Android 75. Android Audio Recording and Playback using MediaPlayer and MediaRecorder 76. Working with the Google Maps Android API in Android Studio 77. Printing with the Android Printing Framework 78. An Android HTML and Web Content Printing Example 79. A Guide to Android Custom Document Printing 80. An Introduction to Android App Links 81. An Android Studio App Links Tutorial 82. A Guide to the Android Studio Profiler 83. An Android Biometric Authentication Tutorial 84. Creating, Testing and Uploading an Android App Bundle 85. An Overview of Android Dynamic Feature Modules 86. An Android Studio Dynamic Feature Tutorial 87. An Overview of Gradle in Android Studio Index

16. Understanding Android Views, View Groups and Layouts

With the possible exception of listening to streaming audio, a user’s interaction with an Android device is primarily visual and tactile in nature. All of this interaction takes place through the user interfaces of the applications installed on the device, including both the built-in applications and any third party applications installed by the user. It should come as no surprise, therefore, that a key element of developing Android applications involves the design and creation of user interfaces.

Within this chapter, the topic of Android user interface structure will be covered, together with an overview of the different elements that can be brought together to make up a user interface; namely Views, View Groups and Layouts.

16.1 Designing for Different Android Devices

The term “Android device” covers a vast array of tablet and smartphone products with different screen sizes and resolutions. As a result, application user interfaces must now be carefully designed to ensure correct presentation on as wide a range of display sizes as possible. A key part of this is ensuring that the user interface layouts resize correctly when run on different devices. This can largely be achieved through careful planning and the use of the layout managers outlined in this chapter.

It is also important to keep in mind that the majority of Android based smartphones and tablets can be held by the user in both portrait and landscape orientations. A well-designed user interface should be able to adapt to such changes and make sensible layout adjustments to utilize the available screen space in each orientation.

16.2 Views and View Groups

Every item in a user interface is a subclass of the Android View class (to be precise android.view.View). The Android SDK provides a set of pre-built views that can be used to construct a user interface. Typical examples include standard items such as the Button, CheckBox, ProgressBar and TextView classes. Such views are also referred to as widgets or components. For requirements that are not met by the widgets supplied with the SDK, new views may be created either by subclassing and extending an existing class, or creating an entirely new component by building directly on top of the View class.

A view can also be comprised of multiple other views (otherwise known as a composite view). Such views are subclassed from the Android ViewGroup class (android.view.ViewGroup) which is itself a subclass of View. An example of such a view is the RadioGroup, which is intended to contain multiple RadioButton objects such that only one can be in the “on”...

16.3 Android Layout Managers

In addition to the widget style views discussed in the previous section, the SDK also includes a set of views referred to as layouts. Layouts are container views (and, therefore, subclassed from ViewGroup) designed for the sole purpose of controlling how child views are positioned on the screen.

The Android SDK includes the following layout views that may be used within an Android user interface design:

ConstraintLayout – Introduced in Android 7, use of this layout manager is recommended for most layout requirements. ConstraintLayout allows the positioning and behavior of the views in a layout to be defined by simple constraint settings assigned to each child view. The flexibility of this layout allows complex layouts to be quickly and easily created without the necessity to nest other layout types inside each other, resulting in improved layout performance. ConstraintLayout is also tightly integrated into the Android Studio Layout...

16.4 The View Hierarchy

Each view in a user interface represents a rectangular area of the display. A view is responsible for what is drawn in that rectangle and for responding to events that occur within that part of the screen (such as a touch event).

A user interface screen is comprised of a view hierarchy with a root view positioned at the top of the tree and child views positioned on branches below. The child of a container view appears on top of its parent view and is constrained to appear within the bounds of the parent view’s display area. Consider, for example, the user interface illustrated in Figure 16-1:

Figure 16-1

In addition to the visible button and checkbox views, the user interface actually includes a number of layout views that control how the visible views are positioned. Figure 16-2 shows an alternative view of the user interface, this time highlighting the presence of the layout views in relation to the child views:

Figure 16-2

As...

16.5 Creating User Interfaces

With a clearer understanding of the concepts of views, layouts and the view hierarchy, the following few chapters will focus on the steps involved in creating user interfaces for Android activities. In fact, there are three different approaches to user interface design: using the Android Studio Layout Editor tool, handwriting XML layout resource files or writing Java code, each of which will be covered.

16.6 Summary

Each element within a user interface screen of an Android application is a view that is ultimately subclassed from the android.view.View class. Each view represents a rectangular area of the device display and is responsible both for what appears in that rectangle and for handling events that take place within the view’s bounds. Multiple views may be combined to create a single composite view. The views within a composite view are children of a container view which is generally a subclass of android.view.ViewGroup (which is itself a subclass of android.view.View). A user interface is comprised of views constructed in the form of a view hierarchy.

The Android SDK includes a range of pre-built views that can be used to create a user interface. These include basic components such as text fields and buttons, in addition to a range of layout managers that can be used to control the positioning of child views. In the event that the supplied views do not meet a specific...

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Android Studio 4.1 Development Essentials – Java Edition
Published in: May 2021 Publisher: Packt ISBN-13: 9781801815161
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