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Can some one explain to me the difference between categories and inheritance in Objective C? I've read the entry in Wikipedia and the discussion on categories there doesn't look any different to that of inheritance. I also looked at the discussion on the topic in the book "Open iPhone Development" and I still don't get it.

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@bobobobo 'bear' as in 'bearing the burden of a journey' not 'baring one's soul' –  griotspeak May 5 '11 at 3:10

8 Answers 8

up vote 88 down vote accepted

Sometimes, inheritance just seems like more trouble than it is worth. It is correctly used when you want to add something to an existing class that is a change in the behaviour of that class.

With a Category, you just want the existing object to do a little more. As already given, if you just want to have a string class that handles compression, you don't need to subclass the string class, you just create a category that handles the compression. That way, you don't need to change the type of the string classes that you already use.

The clue is in the restriction that categories only add methods, you can't add variables to a class using categories. If the class needs more properties, then it has to be subclassed.(edit: you can use associative storage, I believe).

Categories are a nice way to add functionality while at the same time conforming to an object oriented principle to prefer composition over inheritance.

Edit January 2012

Things have changed now. With the current LLVM compiler, and the modern, 64-bit runtime, you can add iVars and properties to class extensions (not categories). This lets you keep private iVars out of the public interface. But, if you declare properties for the iVars, they can still be accessed / changed via KVC, because there is still no such thing as a private method in Objective-C.

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It should be noted, you can declare properties for existing ivars with Categories. By that I mean, you can declare an @property and either @synthesize or @dynamic them in the implementation. I have done this with readonly properties, although I imagine they could be used for anything. That is, assuming MyClass has int myVar, then MyClass (MyCategory) can have a property for myVar. –  jbrennan Nov 4 '09 at 19:45
True, but that still doesn't add storage to the class. –  Abizern Nov 4 '09 at 19:50
There is such a thing as a private method in Objective-C. It's a method that's defined in the @implementation or declared in a nameless category. –  Cthutu Apr 26 '12 at 20:02
@Cthutu that's private by convention. If you try to call such a method you will get a compiler warning, but Objective-C is dynamic, and you can still send the message to the class even if it is not publicly declared. That's what I mean when I say there are no private classes. You can still send the message to the class. –  Abizern Apr 27 '12 at 0:14
OK, that's fair. –  Cthutu Apr 30 '12 at 17:54

Categories allow you to add methods to existing classes. So rather than subclass NSData to add your funky new encryption methods, you can add them directly to the NSData class. Every NSData object in your app now has access to those methods.

To see how useful this can be, look at: CocoaDev

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are you sure that just by making a category out of NSData everywhere NSData is used the category is used, I thought you need to make the category pose as NSData for it to be used instead of NSData –  hhafez Feb 7 '09 at 0:58
It doesn't automatically apply to NSData objects, you still need to #import the header where you define the category. –  Abizern Feb 7 '09 at 1:38
No, classes pose. All NSData objects get the methods of categories that are loaded. –  Chuck Feb 7 '09 at 2:23
And it doesn't matter if you import the header — the objects still get the method. The compiler will complain if you try to call it directly, but you can still call it with performSelector:. –  Chuck Feb 7 '09 at 2:32
A category is not a class; it doesn't replace the existing class. It adds methods to the existing class. –  Terry Wilcox Feb 9 '09 at 14:55

One of favorite illustrations of Objective-c categories in action is NSString. NSString is defined in the Foundation framework, which has no notion of views or windows. However, if you use an NSString in a Cocoa application you'll notice it responds to messages like – drawInRect:withAttributes:.

AppKit defines a category for NSString that provides additional drawing methods. The category allows new methods to be added to an existing class, so we're still just dealing with NSStrings. If AppKit instead implemented drawing by subclassing we'd have to deal with 'AppKitStrings' or 'NSSDrawableStrings' or something like that.

Categories let you add application or domain specific methods to existing classes. It can be quite powerful and convenient.

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If you as a programmer are given a complete set of source code for a code library or application, you can go nuts and change whatever you need to achieve your programming goal with that code.

Unfortunately, this is not always the case or even desirable. A lot of times you are given a binary library/object kit and a set of headers to make do with.

Then a new functionality is needed for a class so you could do a couple of things:

  1. create a new class whole instead of a stock class -- replicating all its functions and members then rewrite all the code to use the new class.

  2. create a new wrapper class that contains the stock class as a member (compositing) and rewrite the codebase to utilize the new class.

  3. binary patches of the library to change the code (good luck)

  4. force the compiler to see your new class as the old one and hope it does not depend on a certain size or place in memory and specific entry points.

  5. subclass specialization -- create subclasses to add functionality and modify driver code to use the subclass instead -- theoretically there should be few problems and if you need to add data members it is necessary, but the memory footprint will be different. You have the advantage of having both the new code and the old code available in the subclass and choosing which to use, the base class method or the overridden method.

  6. modify the necessary objc class with a category definition containing methods to do what you want and/or override the old methods in the stock classes.

    This can also fix errors in the library or customize methods for new hardware devices or whatever. It is not a panacea, but it allows for class method adding without recompiling the class/library that is unchanged. The original class is the same in code, memory size, and entry points, so legacy apps don't break. The compiler simply puts the new method(s) into the runtime as belonging to that class, and overrides methods with the same signature as in the original code.

    an example:

    You have a class Bing that outputs to a terminal, but not to a serial port, and now that is what you need. (for some reason). You have Bing.h and, but not Bing.m in your kit.

    The Bing class does all kinds of stuff internally, you don't even know all what, you just have the public api in the header.

    You are smart, so you create a (SerialOutput) category for the Bing class.

    @interface Bing (SerialOutput)   // a category
    - (void)ToSerial: (SerialPort*) port ;
    @implementation Bing (SerialOutput)
    - (void)ToSerial: (SerialPort*) port 
    ... /// serial output code ///

    The compiler obliges to create an object that can be linked in with your app and the runtime now knows that Bing responds to @selector(ToSerial:) and you can use it as if the Bing class was built with that method. You cannot add data members only methods and this was not intended to create giant tumors of code attached to base classes but it does have its advantages over strictly typed languages.

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A Category is like a mixin: a module in Ruby, or somewhat like an interface in Java. You can think of it as "naked methods". When you add a Category, you're adding methods to the class. The Wikipedia article has good stuff.

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but you are still making a new class aren't you? So what is the difference between that and inheritance –  hhafez Feb 7 '09 at 0:59
No, you are not making a new class. You are adding methods to an existing class. –  Chuck Feb 7 '09 at 2:35
@charlie-martin - There is major difference between Ruby Mixins and Objective-C categories, a Ruby Module is not related to a Class it is being mixed in, but a Category is "attached" to the Class. –  rnk Sep 7 '13 at 0:00

Category is a feature of the Objective-C language that enables you to add methods (interface and implementation) to a class without having to make a subclass. There is no runtime difference—within the scope of your program—between the original methods of the class and the methods added by the category. The methods in the category become part of the class type and are inherited by all the class’s subclasses.

As with delegation, categories are not a strict adaptation of the Decorator pattern, fulfilling the intent but taking a different path to implementing that intent. The behavior added by categories is a compile-time artifact, and is not something dynamically acquired. Moreover, categories do not encapsulate an instance of the class being extended.

The Cocoa frameworks define numerous categories, most of them informal protocols . Often they use categories to group related methods. You may implement categories in your code to extend classes without subclassing or to group related methods. However, you should be aware of these caveats:

->You cannot add instance variables to the class.
->If you override existing methods of the class, your application may behave unpredictably.

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The best way to look at this difference is that: 1. inheritance : when want to turn it exactly in your way. example : AsyncImageView to implement lazy loading. Which is done by inheriting UIView. 2. category : Just want to add a extra flavor to it. example : We want to replace all spaces from a textfield's text

   @interface UITextField(setText)
      - (NSString *)replaceEscape;

   @implementation UITextField(setText)
      - (NSString *)replaceEscape
         self.text=[self.text stringByTrimmingCharactersInSet:
                           [NSCharacterSet whitespaceCharacterSet]];
         return self.text;

--- It will add a new property to textfield for you to escape all white spaces. Just like adding a new dimension to it without completely changing its way.

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I think this is a very confusing answer. The grammar is awful. It is totally unclear what is meant by poetic phenomenolgy such as 'flavor', 'dimension', and 'the way'. The naming of a category (setText), and the method (replaceEscape), to remove spaces from a textfield are badly chosen and not descriptive. Also, it is plain wrong to say that categories add new properties to the textfield. I am asuming that 'property' in this context should be interpretted as 'method'. –  Fnord23 Mar 28 '14 at 10:08

I think some of these answers at least point to the idea that Inheritance is a heavier way of adding functional to an existing class, while categories is more lightweight.

Inheritance is used when you're creating a new class hierarchy (all the bells and whistles) and arguably brings alot of work when chosen as the method of adding functionality to existing classes.

As someone else here put it... If you are using inheritance to add a new method for example to NSString, you have to go and change the type you're using in any other code where you want to use this new method. If, however, you use categories, you can simply call the method on existing NSString types.

The same ends can be achieved with either, but categories seem to give us an option that is simpler and requires less maintenance (probably).

Anyone know if there are situations where categories are absolutely necessary?

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