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Sunday, October 11, 2009

Android - Simulating an Incoming call on Emulator


On windows XP, open a command console.
Type “telnet”. The telnet client starts.
Then, type, o localhost 5554
This connects the telnet client to the android emulator (assuming emulator is running locally listening on port 5554. Else this connection fails)
Now type
gsm call 123456
The last parameter could be any number.
This simulates a call to the emulator.

Wednesday, October 7, 2009

SQLite DB Example | Android Developer Tutorial (Part 12)


There are 4 ways of storing data on the android platform:

  • 1.    Preferences
  • 2.    SQLite Database
  • 3.    Files
  • 4.    Network

A word about each of them here and then I will move on to an example that shows how to work with SQLite DB that comes along with the android platform.


Preferences–
Basically used for storing user preferences for a single application or across applications for a mobile. This is typically name-value pairs accessible to the context.


Databases –
Android supports creating of databases based on SQLite db. Each database is private to the applications that creates it

Files –
Files can be directly stored on the mobile or on to an extended storage medium. By default other applications cannot access it.


Network –
Data can be stored and retrieved from the network too depending on the availability.


If an application wants to store and retrieve data for its own use, without having to share the data across applications, it can access the SQLite DB directly. There is no need of a content provider. We have seen in an earlier post how to use content providers.


In this example, we will do the following:
1.    Create a database (typically a one time activity)
2.    Create a table (typically a one time activity)
3.    Insert values into the table
4.    Retrieve the values from the table
5.    Display the retrieved values as a List view
6.    Delete all the records from the table before closing the connection to the database


Step 1: Create a database:


   sampleDB =  this.openOrCreateDatabase(SAMPLE_DB_NAME, MODE_PRIVATE, null);

This opens a database defined in the constant SAMPLE_DB_NAME, if it already exists. Else it creates a database and opens it. The second parameter is operating mode : MODE_PRIVATE meaning it is accessible to only this context. The other modes are and MODE_WORLD_WRITABLE. MODE_WORLD_READABLE


Step 2: Create a Table:


sampleDB.execSQL("CREATE TABLE IF NOT EXISTS " +
                        SAMPLE_TABLE_NAME +
                        " (LastName VARCHAR, FirstName VARCHAR," +
                        " Country VARCHAR, Age INT(3));");


Step 3: Insert values into the table:


sampleDB.execSQL("INSERT INTO " +
                        SAMPLE_TABLE_NAME +
                        " Values ('Makam','Sai Geetha','India',25);");


Step 4: Retrieve values


Cursor c = sampleDB.rawQuery("SELECT FirstName, Age FROM " +
                        SAMPLE_TABLE_NAME +
                        " where Age > 10 LIMIT 5", null);
           
      if (c != null ) {
            if  (c.moveToFirst()) {
                  do {
String firstName = c.getString(c.getColumnIndex("FirstName"));
                  int age = c.getInt(c.getColumnIndex("Age"));
                  results.add("" + firstName + ",Age: " + age);
                  }while (c.moveToNext());
            }
       }


Step 5: Display the values as a list
           
       this.setListAdapter(newArrayAdapter<String>(this, android.R.layout.simple_list_item_1,results));


The statement displays it as a list as the class extends a ListActivity.


Step 6: Delete the values from the table in the finally part of the try block


finally {
            if (sampleDB != null)
                  sampleDB.execSQL("DELETE FROM " + SAMPLE_TABLE_NAME);
                  sampleDB.close();
        }


It is as simple as this to work with the SQLite DB even in android. No different from a desktop application. However, there are various overloaded methods of query() provided by the SQLIteDatabase class which can be more optimally used instead of execSQL.


The complete code for this example is downloadable here.

Tuesday, October 6, 2009

Broadcast Receivers | Android Developer Tutorial (Part 11)


The concept of Broadcast Receivers, one of the fundamental blocks of Android, is very simple. These are applications that will respond to any intent that is broadcast by other applications. Provided the broadcast intent matches the intent specified against the receiver in the AndroidManifest.xml


This goes to automatically imply that many activities, events, services or the like can broadcast intents expecting the appropriate action to be automatically taken. So, to begin with, let us see the various Broadcast events that are given by the platform itself. Here is a standard list obtained from the android documentation:


·         ACTION_TIME_TICK
·         ACTION_TIME_CHANGED
·         ACTION_TIMEZONE_CHANGED
·         ACTION_BOOT_COMPLETED
·         ACTION_PACKAGE_ADDED
·         ACTION_PACKAGE_CHANGED
·         ACTION_PACKAGE_REMOVED
·         ACTION_PACKAGE_RESTARTED
·         ACTION_PACKAGE_DATA_CLEARED
·         ACTION_UID_REMOVED
·         ACTION_BATTERY_CHANGED
·         ACTION_POWER_CONNECTED
·         ACTION_POWER_DISCONNECTED
·         ACTION_SHUTDOWN


For details on when each of these intents get broadcasted, please see the android documentation. I have chosen the BROADCAST event ACTION_TIME_CHANGED as I can simulate a time change in the emulator. How to simulate the time change from adb shell is given at the end of this tutorial.


Now let us get on to the example of a broadcast receiver. You can download the complete code here.


Any activity that intends to respond to broadcasts has to extend the android.content.BroadcastReceiverclass and implement the single method onReceive().


In my example, I just notify on the status bar that the time has changed and the moment the user clicks on the status bar and sees the details, clicks on the details, the notification is removed from the status bar.


When the user clicks on the detailed portion, I take the user to the contacts application, just for anything better. Ideally this should take to an activity relevant to the application. So, if you see the onReceive()method, it is nothing but a notification example. That is all.


      private NotificationManager mNotificationManager;
      private int SIMPLE_NOTFICATION_ID;
     
      @Override
      public void onReceive(Context context, Intent intent) {

        mNotificationManager = (NotificationManager)context.getSystemService(Context.NOTIFICATION_SERVICE);
      Notification notifyDetails = new Notification(R.drawable.android,"Time Reset!",System.currentTimeMillis());
      PendingIntent myIntent = PendingIntent.getActivity(context, 0, new Intent(Intent.ACTION_VIEW, People.CONTENT_URI), 0);
      notifyDetails.setLatestEventInfo(context, "Time has been Reset", "Click on me to view Contacts", myIntent);
      notifyDetails.flags |= Notification.FLAG_AUTO_CANCEL;
      mNotificationManager.notify(SIMPLE_NOTFICATION_ID, notifyDetails);
            Log.i(getClass().getSimpleName(),"Sucessfully Changed Time");

      }


Once this class is ready, start the android emulator in eclipse. Then, simulate a time changed from the command prompt as given below. You will see the notification come up.


Simulating a time change in the emulator:


To start the adb shell type (in windows, assuming the path has been set to the tools folder of android sdk installation):


C:\> adb shell
#date –- 2009-10-01 14:24:59
20070325.123456
#date –s 20070325.123456


The first step date –-gives the time in seconds since Jan 1st 1970. Take the result and give it as a parameter to date –s, the time is reset in adb and within a minute on the android emulator. This broadcasts the event that time has been changed in the emulator and kicks off the Broadcast Receiver program that has been executed.


Sunday, October 4, 2009

Eclipse Set up and New Android Project

The first steps of configuring Eclipse to create android applications and the steps involved in creating a first android project are very well described in this blog at the screencast site. Hence I am not repeating the same here.

Tuesday, September 29, 2009

Content Provider - Android Developer Tutorial (Part 10)


Content Providers are again one of the fundamental building blocks of the Android Platform. So far, we have looked at Activities, Services, which are basic building blocks. We have also looked at intents, notificationsand variations of the same. None of these have dealt with stored data. Content Provider brings us to the concept of how to deal with data stored in the Android mobile esp. if the data has to be shared across applications.

Before we move on to shared data, let us understand the basics of data storage support provided by Android. 

There are 4 ways we can store data:

  • 1.    Preferences
  • 2.    Files
  • 3.    RDBMS (SQLite)
  • 4.    Network

Preferences– Preferences are used to store user preferences for a single application or across applications in a mobile. They are typically name-value pairs accessible to the context.

Files– Files can be stored directly on to the mobile or to extended storage mediums. They are by default not accessible to applications other than the one that created it.

Database(RDBMS) – Android support creation of databases based on SQLite. These are again private to the application that created it.

Network– Android provides API support to store data over the network on to a server, probably
Note that all these are various forms of storing data and most often for a single application. Irrespective of how data is stored, if it has to be shared across applications, Here comes the concept of Content Providers.

Content Providers are the only way to share data across Android applications. They store and retrieve data thus making it accessible to all. Android platform provides default implementations of content providers for data types like audio, video, images, contact information etc.

In the sample I would like to first show how to work with existing content providers like the contact information. We will first view the existing contacts on the phone. We will insert a new contact (hardcoded name and phone number), update the same contact and delete the same contact, in this example. Note that the update and delete will not work till we create a contact through this example.

Introduction to Content Providers:

Irrespective of how the data is stored, Content Providers give a uniform interface to access the data. Data is exposed as a simple table with rows and columns where row is a record and column is a particular data type with a specific meaning. Like a row could be about a single person and the columns could be the person’s first name, number, address, email id etc.

Each record is identified by a unique _ID field which is the key to the record. Each content provider exposes a unique URI that identifies its data set uniquely. This URI is equivalent to a table name in a database. The URI consists of various parts: eg: content://com.colllabera.labs.sai/tasks/123is a unique URI. content:// is a standard prefix. com.collabera.labs.saiis the authority, tasks is the table name, 123 is the unique _ID.

For the native content providers, these unique URIs are declared as constants in an interface. So, in our program we will be using constants like People.CONTENT_URI which internally translates to content://contacts/people

Let us now look at the code to view all the existing contacts:

//Here is the button to click for viewing the contacts
Button view = (Button)findViewById(R.id.viewButton);
…
//The method / class that gets invoked when the View button is clicked
view.setOnClickListener(new OnClickListener() {
    public void onClick(View v){
       displayContacts();
       Log.i("NativeContentProvider", "Completed Displaying Contact list");
    }
});
…
//Here is the displayContacts() method
private void displayContacts() {
      String[] columns = new String[] {People.NAME,People.NUMBER};
      Uri mContacts = People.CONTENT_URI;
      Cursor mCur = managedQuery(mContacts, // Contact URI
                  columns,    // Which columns to return
                  null,       // Which rows to return
                  null,       // Where clause parameters
                  null        // Order by clause
                  );
      if (mCur.moveToFirst()) {
            String name = null;
            String phoneNo = null;
            do {
              name = mCur.getString(mCur.getColumnIndex(People.NAME));
              phoneNo = mCur.getString(mCur.getColumnIndex(People.NUMBER));
              Toast.makeText(NativeContentProvider.this, name + " " + phoneNo, Toast.LENGTH_SHORT).show();
            } while (mCur.moveToNext());
      }
}

Here we are using the Activity.managedQuery(..)to create and execute a query against the provided URI. The comments against the parameters in the code is self-explanatory. This returns a cursorobject that can be iterated using the two methods moveToFirst()and moveToNext(). For simplicity sake, I have just toasted the contact name and phone number retrieved. An advanced tutorial can start a new activity that can display this in a ListView.

Now, we can move on to creating a new contact. While the button related code will be very similar to the above, let us look at the actual createContact() method.

    private voidcreateContact(String name, String phone) {
      ContentValues contact = new ContentValues();
      contact.put(People.NAME, name);
      insertUri = getContentResolver().insert(People.CONTENT_URI, contact);
      Log.d(getClass().getSimpleName(),insertUri.toString());
      Uri phoneUri = Uri.withAppendedPath(insertUri, People.Phones.CONTENT_DIRECTORY);
      contact.clear();
      contact.put(People.Phones.TYPE, People.TYPE_MOBILE);
      contact.put(People.NUMBER, phone);
      updateUri = getContentResolver().insert(phoneUri, contact);
      Toast.makeText(NativeContentProvider.this, "Created a new contact: " + name + " " + phone, Toast.LENGTH_SHORT).show();
      Log.d(getClass().getSimpleName(),updateUri.toString());
    }

Here we need to understand 2 new classes: ContentResolverand ContentValues. A ContentResolverprovides applications access to the content data / model. We can get a handle to a ContentResolverby calling the getContentResolver() method within the Activity. This provides methods to insert, update and delete data. In order to insert data, we need to provide it through a ContentValuesobject. A ContentValues Object is nothing but a name, value pair where the name of the column is to be mentioned. So, we pass the URI and the ContentValuesto insert()method which returns a unique URI with the new ID created. Once we get the ID of the new person/contact inserted, we insert his/her mobile phone details into the related Phones table by using the returned insertUri. The insertUriwhich is unique to the new record is stored as a class variable to use it in the delete method later. The phoneUri is also stored for updating the same in the updateContact() method later.

Note that Peopleis a class that has implemented various interfaces like android.priovider.BaseColumns, android.provider.Contacts.Phones, android.provider.Contact.PeopleColumnsetc. These constants come from the interfaces.

With the above understanding let us see the update and delete methods:

   private voidupdateContact(String phone) {
      if (updateUri == null) {
            Toast.makeText(NativeContentProvider.this, "There is nothing to update, Please create a contact and then click update", Toast.LENGTH_LONG).show();
      } else {
            ContentValues newPhone = new ContentValues();
            newPhone.put(People.Phones.TYPE, People.TYPE_MOBILE);
            newPhone.put(People.NUMBER, phone);
            getContentResolver().update(updateUri, newPhone, null,null);
            Toast.makeText(NativeContentProvider.this, "Updated the phone number to: " + phone, Toast.LENGTH_SHORT).show();
            Log.i(getClass().getSimpleName(), "Updated the phone number");
      }
    }
   
    private void deleteContact() {
      if (updateUri == null) {
            Toast.makeText(NativeContentProvider.this, "Please create a contact by clicking create button, then I can delete the same", Toast.LENGTH_LONG).show();
           
      } else {
            getContentResolver().delete(insertUri, null, null);
            Toast.makeText(NativeContentProvider.this, "Deleted contact at: " + insertUri.toString(), Toast.LENGTH_SHORT).show();
            updateUri = null;
            insertUri = null;
            Log.i(getClass().getSimpleName(),"Deleted the contact inserted by this program");
      }
    }

These methods only manipulate the freshly created record, for simplicity sake. They call upon the update() and delete() method on the ContentResolver.

The complete code for this example is available here.

Please note that you must add the following permissions to the AndroidManifest.xml file to be able to access the contacts.

<uses-permission android:name="android.permission.READ_CONTACTS"></uses-permission>
<uses-permission android:name="android.permission.WRITE_CONTACTS"></uses-permission>

Otherwise you get a SecurityException.

UPDATE: Please note that the article talks about the Contacts API before SDK 2.0. For the newer updated version, please check this article on New Content Provider