Thursday, February 3, 2011

Blogger's Android App

Blogger is catching up with the times: Android users can finally post timely updates to their blogs using a native app. You can always use Blogger's site or even write your posts in a mail client, but a mobile app is more user friendly.

Blogger's Android app is really basic and doesn't offer too many features. It's mostly useful if you want to write a new post, since you can't edit the existing posts. The editor only lets you enter text and include one or more photos. You can add some labels and geotag your posts, taking advantage of your phone's GPS. If you haven't finished a post, you can always save it as a draft, but you won't be able to publish it from a computer because it's only saved locally.


Blogger's blog mentions that Blogger is a new sharing option, so you can easily share a photo from the Gallery or a web page. "By switching to the List View, you can view all your drafts and published posts that you wrote using the app." Unfortunately, you can't edit existing posts.

All in all, Blogger's Android app offers very few features and I would only use it to write short posts or to share photos from a trip. Maybe Blogger's team should also develop a mobile web app which could be updated faster.

Android Market link: Blogger's app.

The Android 3.0 Fragments API

[This post is by Dianne Hackborn, a Software Engineer who sits very near the exact center of everything Android. — Tim Bray]

An important goal for Android 3.0 is to make it easier for developers to write applications that can scale across a variety of screen sizes, beyond the facilities already available in the platform:

  • Since the beginning, Android’s UI framework has been designed around the use of layout managers, allowing UIs to be described in a way that will adjust to the space available. A common example is a ListView whose height changes depending on the size of the screen, which varies a bit between QVGA, HVGA, and WVGA aspect ratios.

  • Android 1.6 introduced a new concept of screen densities, making it easy for apps to scale between different screen resolutions when the screen is about the same physical size. Developers immediately started using this facility when higher-resolution screens were introduced, first on Droid and then on other phones.

  • Android 1.6 also made screen sizes accessible to developers, classifying them into buckets: “small” for QVGA aspect ratios, “normal” for HVGA and WVGA aspect ratios, and “large” for larger screens. Developers can use the resource system to select between different layouts based on the screen size.

The combination of layout managers and resource selection based on screen size goes a long way towards helping developers build scalable UIs for the variety of Android devices we want to enable. As a result, many existing handset applications Just Work under Honeycomb on full-size tablets, without special compatibility modes, with no changes required. However, as we move up into tablet-oriented UIs with 10-inch screens, many applications also benefit from a more radical UI adjustment than resources can easily provide by themselves.

Introducing the Fragment

Android 3.0 further helps applications adjust their interfaces with a new class called Fragment. A Fragment is a self-contained component with its own UI and lifecycle; it can be-reused in different parts of an application’s user interface depending on the desired UI flow for a particular device or screen.

In some ways you can think of a Fragment as a mini-Activity, though it can’t run independently but must be hosted within an actual Activity. In fact the introduction of the Fragment API gave us the opportunity to address many of the pain points we have seen developers hit with Activities, so in Android 3.0 the utility of Fragment extends far beyond just adjusting for different screens:

  • Embedded Activities via ActivityGroup were a nice idea, but have always been difficult to deal with since Activity is designed to be an independent self-contained component instead of closely interacting with other activities. The Fragment API is a much better solution for this, and should be considered as a replacement for embedded activities.

  • Retaining data across Activity instances could be accomplished through Activity.onRetainNonConfigurationInstance(), but this is fairly klunky and non-obvious. Fragment replaces that mechanism by allowing you to retain an entire Fragment instance just by setting a flag.

  • A specialization of Fragment called DialogFragment makes it easy to show a Dialog that is managed as part of the Activity lifecycle. This replaces Activity’s “managed dialog” APIs.

  • Another specialization of Fragment called ListFragment makes it easy to show a list of data. This is similar to the existing ListActivity (with a few more features), but should reduce the common question about how to show a list with some other data.

  • The information about all fragments currently attached to an activity is saved for you by the framework in the activity’s saved instance state and restored for you when it restarts. This can greatly reduce the amount of state save and restore code you need to write yourself.

  • The framework has built-in support for managing a back-stack of Fragment objects, making it easy to provide intra-activity Back button behavior that integrates the existing activity back stack. This state is also saved and restored for you automatically.

Getting started

To whet your appetite, here is a simple but complete example of implementing multiple UI flows using fragments. We first are going to design a landscape layout, containing a list of items on the left and details of the selected item on the right. This is the layout we want to achieve:

The code for this activity is not interesting; it just calls setContentView() with the given layout:

<LinearLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:orientation="horizontal"
android:layout_width="match_parent"
android:layout_height="match_parent">

<fragment class="com.example.android.apis.app.TitlesFragment"
android:id="@+id/titles" android:layout_weight="1"
android:layout_width="0px"
android:layout_height="match_parent" />

<FrameLayout android:id="@+id/details" android:layout_weight="1"
android:layout_width="0px"
android:layout_height="match_parent" />

</LinearLayout>

You can see here our first new feature: the <fragment> tag allows you to automatically instantiate and install a Fragment subclass into your view hierarchy. The fragment being implemented here derives from ListFragment, displaying and managing a list of items the user can select. The implementation below takes care of displaying the details of an item either in-place or as a separate activity, depending on the UI layout. Note how changes to fragment state (the currently shown details fragment) are retained across configuration changes for you by the framework.

public static class TitlesFragment extends ListFragment {
boolean mDualPane;
int mCurCheckPosition = 0;

@Override
public void onActivityCreated(Bundle savedState) {
super.onActivityCreated(savedState);

// Populate list with our static array of titles.
setListAdapter(new ArrayAdapter<String>(getActivity(),
R.layout.simple_list_item_checkable_1,
Shakespeare.TITLES));

// Check to see if we have a frame in which to embed the details
// fragment directly in the containing UI.
View detailsFrame = getActivity().findViewById(R.id.details);
mDualPane = detailsFrame != null
&& detailsFrame.getVisibility() == View.VISIBLE;

if (savedState != null) {
// Restore last state for checked position.
mCurCheckPosition = savedState.getInt("curChoice", 0);
}

if (mDualPane) {
// In dual-pane mode, list view highlights selected item.
getListView().setChoiceMode(ListView.CHOICE_MODE_SINGLE);
// Make sure our UI is in the correct state.
showDetails(mCurCheckPosition);
}
}

@Override
public void onSaveInstanceState(Bundle outState) {
super.onSaveInstanceState(outState);
outState.putInt("curChoice", mCurCheckPosition);
}

@Override
public void onListItemClick(ListView l, View v, int pos, long id) {
showDetails(pos);
}

/**
* Helper function to show the details of a selected item, either by
* displaying a fragment in-place in the current UI, or starting a
* whole new activity in which it is displayed.
*/
void showDetails(int index) {
mCurCheckPosition = index;

if (mDualPane) {
// We can display everything in-place with fragments.
// Have the list highlight this item and show the data.
getListView().setItemChecked(index, true);

// Check what fragment is shown, replace if needed.
DetailsFragment details = (DetailsFragment)
getFragmentManager().findFragmentById(R.id.details);
if (details == null || details.getShownIndex() != index) {
// Make new fragment to show this selection.
details = DetailsFragment.newInstance(index);

// Execute a transaction, replacing any existing
// fragment with this one inside the frame.
FragmentTransaction ft
= getFragmentManager().beginTransaction();
ft.replace(R.id.details, details);
ft.setTransition(
FragmentTransaction.TRANSIT_FRAGMENT_FADE);
ft.commit();
}

} else {
// Otherwise we need to launch a new activity to display
// the dialog fragment with selected text.
Intent intent = new Intent();
intent.setClass(getActivity(), DetailsActivity.class);
intent.putExtra("index", index);
startActivity(intent);
}
}
}

For this first screen we need an implementation of DetailsFragment, which simply shows a TextView containing the text of the currently selected item.

public static class DetailsFragment extends Fragment {
/**
* Create a new instance of DetailsFragment, initialized to
* show the text at 'index'.
*/
public static DetailsFragment newInstance(int index) {
DetailsFragment f = new DetailsFragment();

// Supply index input as an argument.
Bundle args = new Bundle();
args.putInt("index", index);
f.setArguments(args);

return f;
}

public int getShownIndex() {
return getArguments().getInt("index", 0);
}

@Override
public View onCreateView(LayoutInflater inflater,
ViewGroup container, Bundle savedInstanceState) {
if (container == null) {
// Currently in a layout without a container, so no
// reason to create our view.
return null;
}

ScrollView scroller = new ScrollView(getActivity());
TextView text = new TextView(getActivity());
int padding = (int)TypedValue.applyDimension(
TypedValue.COMPLEX_UNIT_DIP,
4, getActivity().getResources().getDisplayMetrics());
text.setPadding(padding, padding, padding, padding);
scroller.addView(text);
text.setText(Shakespeare.DIALOGUE[getShownIndex()]);
return scroller;
}
}

It is now time to add another UI flow to our application. When in portrait orientation, there is not enough room to display the two fragments side-by-side, so instead we want to show only the list like this:

With the code shown so far, all we need to do here is introduce a new layout variation for portrait screens like so:

<FrameLayout xmlns:android="http://schemas.android.com/apk/res/android"
android:layout_width="match_parent"
android:layout_height="match_parent">
<fragment class="com.example.android.apis.app.TitlesFragment"
android:id="@+id/titles"
android:layout_width="match_parent"
android:layout_height="match_parent" />
</FrameLayout>

The TitlesFragment will notice that it doesn’t have a container in which to show its details, so show only its list. When you tap on an item in the list we now need to go to a separate activity in which the details are shown.

With the DetailsFragment already implemented, the implementation of the new activity is very simple because it can reuse the same DetailsFragment from above:

public static class DetailsActivity extends FragmentActivity {

@Override
protected void onCreate(Bundle savedInstanceState) {
super.onCreate(savedInstanceState);

if (getResources().getConfiguration().orientation
== Configuration.ORIENTATION_LANDSCAPE) {
// If the screen is now in landscape mode, we can show the
// dialog in-line so we don't need this activity.
finish();
return;
}

if (savedInstanceState == null) {
// During initial setup, plug in the details fragment.
DetailsFragment details = new DetailsFragment();
details.setArguments(getIntent().getExtras());
getSupportFragmentManager().beginTransaction().add(
android.R.id.content, details).commit();
}
}
}

Put that all together, and we have a complete working example of an application that fairly radically changes its UI flow based on the screen it is running on, and can even adjust it on demand as the screen configuration changes.

This illustrates just one way fragments can be used to adjust your UI. Depending on your application design, you may prefer other approaches. For example, you could put your entire application in one activity in which you change the fragment structure as its state changes; the fragment back stack can come in handy in this case.

More information on the Fragment and FragmentManager APIs can be found in the Android 3.0 SDK documentation. Also be sure to look at the ApiDemos app under the Resources tab, which has a variety of Fragment demos covering their use for alternative UI flow, dialogs, lists, populating menus, retaining across activity instances, the back stack, and more.

Fragmentation for all!

For developers starting work on tablet-oriented applications designed for Android 3.0, the new Fragment API is useful for many design situations that arise from the larger screen. Reasonable use of fragments should also make it easier to adjust the resulting application’s UI to new devices in the future as needed -- for phones, TVs, or wherever Android appears.

However, the immediate need for many developers today is probably to design applications that they can provide for existing phones while also presenting an improved user interface on tablets. With Fragment only being available in Android 3.0, their shorter-term utility is greatly diminished.

To address this, we plan to have the same fragment APIs (and the new LoaderManager as well) described here available as a static library for use with older versions of Android; we’re trying to go right back to 1.6. In fact, if you compare the code examples here to those in the Android 3.0 SDK, they are slightly different: this code is from an application using an early version of the static library fragment classes which is running, as you can see on the screenshots, on Android 2.3. Our goal is to make these APIs nearly identical, so you can start using them now and, at whatever point in the future you switch to Android 3.0 as your minimum version, move to the platform’s native implementation with few changes in your app.

We don’t have a firm date for when this library will be available, but it should be relatively soon. In the meantime, you can start developing with fragments on Android 3.0 to see how they work, and most of that effort should be transferable.

Wednesday, February 2, 2011

New Merchandising and Billing Features on Android Market

[This post is by Eric Chu, Android Developer Ecosystem. —Dirk Dougherty]


Following on last week’s announcement of the Android 3.0 Preview SDK, I’d like to share some more good news with you about three important new features on Android Market.

Android Market on the Web


Starting today, we have extended Android Market client from mobile devices to every desktop. Anyone can now easily find and share applications from their favorite browser. Once users select an application they want, it will automatically be downloaded to their Android-powered devices over-the-air.

Android Market on the Web dramatically expands the discoverability of applications through a rich browsing experience, suggestion-guided searching, deep linking, social sharing, and other merchandising features.

We are releasing the initial version of Android Market on the Web in English and will be extending it to other languages in the weeks ahead.

If you have applications published on Android Market, we encourage you to visit the site and review how they are presented. If you need additional information about what assets you should provide, please visit Android Market Help Center.

You can access Android Market on the Web at:

http://market.android.com/

Buyer’s Currency

Android Market lets you sell applications to users in 32 buyer countries around the world. Today we’re introducing Buyer’s Currency to give you more control over how you price your products across those countries. This feature lets you price your applications differently in each market and improves the purchase experience for buyers by showing prices in their home currencies.

We’ll be rolling out Buyer’s Currency in stages, starting with developers in the U.S. and reaching developers in other countries shortly after. We anticipate it will take approximately four months for us to complete this process.

We encourage you to watch for the appearance of new Buyer’s Currency options in the Android Market publishing console and set prices as soon as possible.

In-app Billing

After months of hard work by the Android Market team, I am extremely pleased to announce the arrival of In-app Billing on Android Market. This new service gives developers more ways to monetize their applications through new billing models including try-and-buy, virtual goods, upgrades, and more.

The In-app Billing service manages billing transactions between apps and users, providing a consistent purchasing experience with familiar forms of payment across all apps. At the same time, it gives you full control over how your digital goods are purchased and tracked. You can let Android Market manage and track the purchases for you or you can integrate with your own back-end service to verify and track purchases in the way that's best for your app.

We’ll be launching In-app Billing in stages. Beginning today, we are providing detailed documentation and a sample application to help you get familiar with the service. Over the next few weeks we’ll be rolling out updates to the Android Market client that will enable you to test against the In-app Billing service. Before the end of this quarter, the service will be live for users, to enable you to start monetizing your applications with this new capability. For complete information about the rollout, see the release information in the In-app Billing documentation.

Helping developers merchandise and monetize their products is a top priority for the Android Market team. We will continue to work hard to to make it the best marketplace for your to distribute your products. For now, we hope you’ll check out these new features to help you better deliver your products through Android Market.

Android Market for the Web

Google has finally released the Web-based version of the Android Market, which is now available at market.android.com. You can link to applications, find apps from your computer and install them over the air.

Android Market for the Web includes all the applications, not just the ones that are available for a certain device or a certain version of Android, so it's much more comprehensive than the application that's installed on your Android device. You'll be able to find paid apps even if you live in a country where you can only install free apps and you'll be able to find apps that require Froyo even if your phone still uses Android Donut. In fact, you don't even have to be an Android user to explore the Market.

I've tried to install an application from the web site, but Google shows an "invalid request" error after the authentication process.



To make the Market even better, Google announced two additional features that will be available soon: in-app purchases and fixed pricing for various currencies. That means you'll see less apps that cost $1.73 or €2.26, assuming that developers will adjust their prices.

From Android to iPhone: Google Shopper


More and more Google applications that used to be available only for Android are now ported to the iPhone. After Google Voice, Google Latitude, Google Places, Google Goggles (a feature of the Google Mobile App), iPhone users can now download Google Shopper, a product search tool that recognizes barcodes, supports voice search and lets you compare prices at online stores and local stores. It's actually a mobile version of Google Product Search that knows your location and has more input methods.

Google Shopper saves your history and lets you star products, but it doesn't integrate with Google accounts, so your data is only available on a single device. Another issue is that voice search times out too fast, so it's quite difficult too use.

According to Google, "Shopper is available for iPhone 3GS and iPhone 4 with iOS 4.0+ in English only for the United States and the UK."


There are still many Android-only apps (Sky Map, Google Translate, Gmail, Google Talk, Google Reader, Google Maps Navigation, Google Finance, Gesture Search) and it's likely that some of them will be available in Apple's App Store in the coming months.

Android Honeycomb's Browser Supports SVG

One of the most annoying things about Android's built-in browser was the lack of support for SVG (Scalable Vector Graphics). Android's browser was the most popular mobile browser that didn't support SVG and that was surprising, considering Google's push for better web apps.

Ariya Hidayat tried to see if Honeycomb's browser can handle SVG files and the good news is that the answer is affirmative. Hopefully, the next Android release for smartphones will include this feature.

Tuesday, February 1, 2011

Google Results, One of Bing's Ranking Signals

Danny Sullivan has a story about Google's claims that Bing copies Google search results. Google noticed that there's an increasing overlap between the top results at Google and Bing, so it suspected that Microsoft was using Google's results to improve its search engine.
To verify its suspicions, Google set up a sting operation. For the first time in its history, Google crafted one-time code that would allow it to manually rank a page for a certain term (code that will soon be removed, as described further below). It then created about 100 of what it calls "synthetic" searches, queries that few people, if anyone, would ever enter into Google.

These searches returned no matches on Google or Bing — or a tiny number of poor quality matches, in a few cases — before the experiment went live. With the code enabled, Google placed a honeypot page to show up at the top of each synthetic search.

The only reason these pages appeared on Google was because Google forced them to be there. There was nothing that made them naturally relevant for these searches. If they started to appeared at Bing after Google, that would mean that Bing took Google's bait and copied its results.

This all happened in December. When the experiment was ready, about 20 Google engineers were told to run the test queries from laptops at home, using Internet Explorer, with Suggested Sites and the Bing Toolbar both enabled. They were also told to click on the top results. They started on December 17. By December 31, some of the results started appearing on Bing. (...) Only a small number of the test searches produced this result, about 7 to 9 (depending on when exactly Google checked) out of the 100.

Microsoft's engineers probably thought that Google's results were pretty good, so why not use clickstream data from Internet Explorer and Bing Toolbar to monitor the results picked by Google users? It's a clever idea, but not when you're using it to artificially add results from Google. Bing's team says that they use "collective intelligence" to improve search results, so we can assume that a non-negligible amount of intelligence comes from Google. When you're including results just because Google does it, you're trusting Google too much and you implicitly admit that Google offers better results.

Update: Google's Amit Singhal says that "some Bing results increasingly look like an incomplete, stale version of Google results – a cheap imitation" and implies that Bing shows "recycled search results". I think that's an exaggeration and Microsoft has every right to use all the information it has, including analytics data, Bing Toolbar's clickstream, Facebook's popular pages and Twitter's trending topics. Bad mouthing competitors doesn't help Google in the long run.