Questions tagged [nsmanagedobjectcontext]

An instance of NSManagedObjectContext represents a single “object space”. Its primary responsibility is to manage a collection of managed objects. These objects form a group of related model objects that represent an internally consistent view of one or more persistent stores. A single managed object instance exists in one and only one context, but multiple copies of an object can exist in different contexts. Available in iOS 3.0 and later in CoreData.

An instance of NSManagedObjectContext represents a single “object space” or scratch pad in an application. Its primary responsibility is to manage a collection of managed objects. These objects form a group of related model objects that represent an internally consistent view of one or more persistent stores. A single managed object instance exists in one and only one context, but multiple copies of an object can exist in different contexts. Thus object uniquing is scoped to a particular context.

Life-cycle Management The context is a powerful object with a central role in the life-cycle of managed objects, with responsibilities from life-cycle management (including faulting) to validation, inverse relationship handling, and undo/redo. Through a context you can retrieve or “fetch” objects from a persistent store, make changes to those objects, and then either discard the changes or—again through the context—commit them back to the persistent store. The context is responsible for watching for changes in its objects and maintains an undo manager so you can have finer-grained control over undo and redo. You can insert new objects and delete ones you have fetched, and commit these modifications to the persistent store.

All objects fetched from an external store are registered in a context together with a global identifier (an instance of NSManagedObjectID) that’s used to uniquely identify each object to the external store.

Parent Store Managed object contexts have a parent store from which they retrieve data representing managed objects and through which they commit changes to managed objects.

Prior to OS X v10.7 and iOS v5.0, the parent store is always a persistent store coordinator. In OS X v10.7 and later and iOS v5.0 and later, the parent store may be another managed object context. Ultimately the root of a context’s ancestry must be a persistent store coordinator. The coordinator provides the managed object model and dispatches requests to the various persistent stores containing the data.

If a context’s parent store is another managed object context, fetch and save operations are mediated by the parent context instead of a coordinator. This pattern has a number of usage scenarios, including:

Performing background operations on a second thread or queue.

Managing discardable edits, such as in an inspector window or view.

As the first scenario implies, a parent context can service requests from children on different threads. You cannot, therefore, use parent contexts created with the thread confinement type (see Concurrency).

When you save changes in a context, the changes are only committed “one store up.” If you save a child context, changes are pushed to its parent. Changes are not saved to the persistent store until the root context is saved. (A root managed object context is one whose parent context is nil.) In addition, a parent does not pull changes from children before it saves. You must save a child context if you want ultimately to commit the changes.

Notifications A context posts notifications at various points—see NSManagedObjectContextObjectsDidChangeNotification for example. Typically, you should register to receive these notifications only from known contexts:

[[NSNotificationCenter defaultCenter] addObserver:self
                                      selector:@selector(<#Selector name#>)
                                      name:NSManagedObjectContextDidSaveNotification
                                      object:<#A managed object context#>];

Several system frameworks use Core Data internally. If you register to receive these notifications from all contexts (by passing nil as the object parameter to a method such as addObserver:selector:name:object:), then you may receive unexpected notifications that are difficult to handle.

Concurrency Core Data uses thread (or serialized queue) confinement to protect managed objects and managed object contexts (see Concurrency with Core Data). A consequence of this is that a context assumes the default owner is the thread or queue that allocated it—this is determined by the thread that calls its init method. You should not, therefore, initialize a context on one thread then pass it to a different thread. Instead, you should pass a reference to a persistent store coordinator and have the receiving thread/queue create a new context derived from that. If you use NSOperation, you must create the context in main (for a serial queue) or start (for a concurrent queue).

In OS X v10.7 and later and iOS v5.0 and later, when you create a context you can specify the concurrency pattern with which you will use it using initWithConcurrencyType:. When you create a managed object context using initWithConcurrencyType:, you have three options for its thread (queue) association

Confinement (NSConfinementConcurrencyType)

For backwards compatibility, this is the default. You promise that context will not be used by any thread other than the one on which you created it. In general, to make the behavior explicit you’re encouraged to use one of the other types instead.

You can only use this concurrency type if the managed object context’s parent store is a persistent store coordinator.

Private queue (NSPrivateQueueConcurrencyType)

The context creates and manages a private queue.

Main queue (NSMainQueueConcurrencyType)

The context is associated with the main queue, and as such is tied into the application’s event loop, but it is otherwise similar to a private queue-based context. You use this queue type for contexts linked to controllers and UI objects that are required to be used only on the main thread.

If you use contexts using the confinement pattern, you send the contexts messages directly; it’s up to you to ensure that you send the messages from the right queue.

You use contexts using the queue-based concurrency types in conjunction with performBlock: and performBlockAndWait:. You group “standard” messages to send to the context within a block to pass to one of these methods. There are two exceptions:

Setter methods on queue-based managed object contexts are thread-safe. You can invoke these methods directly on any thread.

If your code is executing on the main thread, you can invoke methods on the main queue style contexts directly instead of using the block based API.

performBlock: and performBlockAndWait: ensure the block operations are executed on the queue specified for the context. The performBlock: method returns immediately and the context executes the block methods on its own thread. With the performBlockAndWait: method, the context still executes the block methods on its own thread, but the method doesn’t return until the block is executed.

It’s important to appreciate that blocks are executed as a distinct body of work. As soon as your block ends, anyone else can enqueue another block, undo changes, reset the context, and so on. Thus blocks may be quite large, and typically end by invoking save:.

__block NSError *error;
__block BOOL savedOK = NO;
[myMOC performBlockAndWait:^{
    // Do lots of things with the context.
    savedOK = [myMOC save:&error];
}];

You can also perform other operations, such as:

NSFetchRequest *fr = [NSFetchRequest fetchRequestWithEntityName:@"Entity"];
__block NSUInteger rCount = 0;

[context performBlockAndWait:^() {
    NSError *error;
    rCount = [context countForFetchRequest:fr error:&error];
    if (rCount == NSNotFound) {
        // Handle the error.
    } }];
NSLog(@"Retrieved %d items", (int)rCount);

Subclassing Notes You are strongly discouraged from subclassing NSManagedObjectContext. The change tracking and undo management mechanisms are highly optimized and hence intricate and delicate. Interposing your own additional logic that might impact processPendingChanges can have unforeseen consequences. In situations such as store migration, Core Data will create instances of NSManagedObjectContext for its own use. Under these circumstances, you cannot rely on any features of your custom subclass. Any NSManagedObject subclass must always be fully compatible with NSManagedObjectContext (that is, it cannot rely on features of a subclass of NSManagedObjectContext).

1384 questions
3
votes
2 answers

How do I update an annotation without using setCoordinate?

I have a subclassed NSManagedObject that conforms to the MKAnnotation protocol and it has NSNumber properties for latitude and longitude. When I change any coordinates myself, I use setCoordinate: and update the latitude and longitude properties…
3
votes
2 answers

Managed Object Context not saving to persistant store

I have a threaded operation that creates a new managed object, saves it to the persistant store, then passes the objectID of the new objected via NSNotification to the main thread for further processing However, when I try to access the newly…
3
votes
2 answers

I got fault when I fetched my data from NSManagedObjectContext

I run my app and then fetched my data. Data is ok. When I run second time I got fault for my old values. What is wrong? - (BOOL)application:(UIApplication *)application didFinishLaunchingWithOptions:(NSDictionary *)launchOptions { …
Voloda2
  • 12,359
  • 18
  • 80
  • 130
3
votes
0 answers

NSManagedObjectContext has stale data even after reset

I am using CoreData backed by SQLite in my iOS application. At a certain point in the application, I want to clear all data in the database and start from scratch. I remove my NSPersistentStore from the NSPersistentStoreCoordinator, then I delete…
vm2000
  • 332
  • 1
  • 14
3
votes
1 answer

How to manage one-to-many relationship in Core Data?

I am having a hard time figuring out some things about how Core Data handles its database. I will explain my problems with a concrete example: Let's just say that we have the following schema where there are departments which hold numerous accounts…
3
votes
1 answer

NSFetchedResultsController on main thread ignoring saves to Core Data from a different thread?

I have an NSFetchedResultsController on the main thread. Also from the main thread, I asynchronously send out a network request for JSON. When that JSON string returns, I start an NSOperation that inits a new (background) NSManagedObjectContext,…
3
votes
2 answers

Core Data and Managed Object Contexts

I'm new with Core Data and I have some questions about how to do the things in the right way. I think I need a temporaryManagedObjectContext to work with temporary entities, while user is editing a new entity. When user tap save that data I want to…
Samui
  • 1,384
  • 3
  • 14
  • 28
3
votes
2 answers

NSManagedObjectContext: How to update main context

I've a project using Core Data with a default AppDelegate. I've the following thread in my code, where the image for my NSManagedObject WSObject is downloaded. As you will notice, I'm creating a new NSManagedObjectContext for this background thread.…
dhrm
  • 14,335
  • 34
  • 117
  • 183
3
votes
1 answer

Core Data background sorting

I have a Department entity which has a one-to-many relationship to an Employee entity. During runtime, for each Department object I want to maintain a sorted array of Employee objects (sorted according to some attribute) which will be used as a…
3
votes
3 answers

[ controllerWillChangeContent:]: message sent to deallocated instance

I am having a problem with my ipad app. I've got a view that is accessed in 2 ways, if i go in one way it works perfectly. If I go in through another though, it crashes when saving the context. I suspect it is something in the parent (orders by…
3
votes
2 answers

Singleton managedObjectContext

I want to use the singleton UIApplication to access the managedObjectContext of the AppDelegate. But when I write [[[UIApplication sharedApplication] delegate] managedObjectContext] or [[[UIApplication sharedApplication] delegate]…
3
votes
2 answers

NSFetchedResultsController Error: 'NSInternalInconsistencyException', reason: 'no object at index 1 in section at index 0'

I have an app using tableview and NSFetchedResultsController. I am getting the error: Serious application error. Exception was caught during Core Data change processing. This is usually a bug within an observer of…
3
votes
2 answers

How to custom init a UIViewController of Interface Builder with managed context

I'm creating a simple interface with NavigationController and BandListViewController(UITableViewController) inside Interface Builder and setting the delegation to AppDelegate properties. @interface CRUDAppDelegate : NSObject
mateusmaso
  • 7,843
  • 6
  • 41
  • 54
3
votes
4 answers

App Design: Handling Core Data w/ Background Contexts ; Merging w/ Notifications Filtered by MOC

I've got an app design question that I'm hoping someone can help with. Let's take a very simple setup: Core Data app for displaying news items from a server. Main thread / UI has a managed object context that's used by all the view controllers to…
Hunter
  • 4,343
  • 5
  • 42
  • 44
3
votes
1 answer

Managed Object Context Save Doesn't Make It To Persistent Store

In prepping my app for an update, I've found a weird issue that's so far been a bit of a head-scratcher. I have a simple method that fetches a managed object, updates one attribute and then saves the change to the persistent store. The weird thing…
Hunter
  • 4,343
  • 5
  • 42
  • 44