skills/background-processing/SKILL.md
Schedule and execute background work on iOS using BGTaskScheduler. Use when registering BGAppRefreshTask for short background fetches, BGProcessingTask for long-running maintenance, BGContinuedProcessingTask (iOS 26+) for foreground-started work that continues in background, background URLSession downloads, or background push notifications. Covers Info.plist configuration, expiration handling, task completion, and debugging with simulated launches.
npx skillsauth add dpearson2699/swift-ios-skills background-processingInstall this skill globally with one command. Works with Claude Code, Cursor, and Windsurf.
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Register, schedule, and execute background work on iOS using the BackgroundTasks framework, background URLSession, and background push notifications.
Every task identifier must be declared in Info.plist under
BGTaskSchedulerPermittedIdentifiers, or submit(_:) throws
BGTaskScheduler.Error.Code.notPermitted.
<key>BGTaskSchedulerPermittedIdentifiers</key>
<array>
<string>com.example.app.refresh</string>
<string>com.example.app.db-cleanup</string>
<string>com.example.app.export.*</string>
</array>
Also enable the required UIBackgroundModes:
<key>UIBackgroundModes</key>
<array>
<string>fetch</string> <!-- Required for BGAppRefreshTask -->
<string>processing</string> <!-- Required for BGProcessingTask -->
</array>
In Xcode: target > Signing & Capabilities > Background Modes > enable "Background fetch" and "Background processing".
Register handlers before app launch completes. In UIKit, register in
application(_:didFinishLaunchingWithOptions:); in SwiftUI, register in App.init().
import BackgroundTasks
@main
class AppDelegate: UIResponder, UIApplicationDelegate {
func application(
_ application: UIApplication,
didFinishLaunchingWithOptions launchOptions: [UIApplication.LaunchOptionsKey: Any]?
) -> Bool {
BGTaskScheduler.shared.register(
forTaskWithIdentifier: "com.example.app.refresh",
using: nil // nil = default background queue
) { task in
self.handleAppRefresh(task: task as! BGAppRefreshTask)
}
BGTaskScheduler.shared.register(
forTaskWithIdentifier: "com.example.app.db-cleanup",
using: nil
) { task in
self.handleDatabaseCleanup(task: task as! BGProcessingTask)
}
return true
}
}
import SwiftUI
import BackgroundTasks
@main
struct MyApp: App {
init() {
BGTaskScheduler.shared.register(
forTaskWithIdentifier: "com.example.app.refresh",
using: nil
) { task in
BackgroundTaskManager.shared.handleAppRefresh(
task: task as! BGAppRefreshTask
)
}
}
var body: some Scene {
WindowGroup { ContentView() }
}
}
Short-lived tasks (~30 seconds) for fetching small data updates. The system
decides when to launch based on usage patterns. Review notes should say
earliestBeginDate is a lower-bound hint and the system may run the task later.
func scheduleAppRefresh() {
let request = BGAppRefreshTaskRequest(
identifier: "com.example.app.refresh"
)
request.earliestBeginDate = Date(timeIntervalSinceNow: 15 * 60)
// earliestBeginDate is a lower-bound hint; the system may delay launch.
do {
try BGTaskScheduler.shared.submit(request)
} catch {
print("Could not schedule app refresh: \(error)")
}
}
func handleAppRefresh(task: BGAppRefreshTask) {
// Schedule the next refresh before doing work
scheduleAppRefresh()
let fetchTask = Task {
do {
let data = try await APIClient.shared.fetchLatestFeed()
await FeedStore.shared.update(with: data)
task.setTaskCompleted(success: true)
} catch {
task.setTaskCompleted(success: false)
}
}
// CRITICAL: Handle expiration -- system can revoke time at any moment
task.expirationHandler = {
fetchTask.cancel()
task.setTaskCompleted(success: false)
}
}
Long-running tasks (minutes) for maintenance, data processing, or cleanup.
Runs only when device is idle and (optionally) charging. Review notes should say
earliestBeginDate is a lower-bound hint and the system may run the task later.
func scheduleProcessingTask() {
let request = BGProcessingTaskRequest(
identifier: "com.example.app.db-cleanup"
)
request.requiresNetworkConnectivity = false
request.requiresExternalPower = true
request.earliestBeginDate = Date(timeIntervalSinceNow: 60 * 60)
// earliestBeginDate is a lower-bound hint; the system may delay launch.
do {
try BGTaskScheduler.shared.submit(request)
} catch {
print("Could not schedule processing task: \(error)")
}
}
func handleDatabaseCleanup(task: BGProcessingTask) {
scheduleProcessingTask()
let cleanupTask = Task {
do {
try await DatabaseManager.shared.purgeExpiredRecords()
try await DatabaseManager.shared.rebuildIndexes()
task.setTaskCompleted(success: true)
} catch {
task.setTaskCompleted(success: false)
}
}
task.expirationHandler = {
cleanupTask.cancel()
task.setTaskCompleted(success: false)
}
}
A task initiated in the foreground by a user action that continues running in the
background. The system displays progress via a Live Activity. Conforms to
ProgressReporting.
Availability: iOS 26.0+, iPadOS 26.0+
Unlike BGAppRefreshTask and BGProcessingTask, this task starts immediately
from the foreground. The system can terminate it under resource pressure,
prioritizing tasks that report minimal progress first. Set expirationHandler for user or system cancellation, cancel in-flight work, and clean up partial output before reporting completion.
import BackgroundTasks
func startExport() {
// Register the task handler at app launch, not here.
// BGTaskScheduler requires registration before app launch completes.
let jobID = UUID().uuidString
let request = BGContinuedProcessingTaskRequest(
identifier: "com.example.app.export.\(jobID)",
title: "Exporting Photos",
subtitle: "Processing 247 items"
)
// Use a permitted base wildcard identifier: com.example.app.export.*
// earliestBeginDate is ignored for continued processing requests.
// .queue: begin as soon as possible if can't run immediately
// .fail: fail submission if can't run immediately
request.strategy = .queue
do {
try BGTaskScheduler.shared.submit(request)
} catch {
print("Could not submit continued processing task: \(error)")
}
}
func performExport(task: BGContinuedProcessingTask) async {
let items = await PhotoLibrary.shared.itemsToExport()
let progress = task.progress
progress.totalUnitCount = Int64(items.count)
for (index, item) in items.enumerated() {
if Task.isCancelled { break }
await PhotoExporter.shared.export(item)
progress.completedUnitCount = Int64(index + 1)
// Update the user-facing title/subtitle
task.updateTitle(
"Exporting Photos",
subtitle: "\(index + 1) of \(items.count) complete"
)
}
task.setTaskCompleted(success: !Task.isCancelled)
}
For GPU work, check support and enable Background GPU Access (com.apple.developer.background-tasks.continued-processing.gpu):
let supported = BGTaskScheduler.supportedResources
if supported.contains(.gpu) {
request.requiredResources = .gpu
}
Use URLSessionConfiguration.background for downloads that continue even after
the app is suspended or terminated. The system handles the transfer out of
process.
class DownloadManager: NSObject, URLSessionDownloadDelegate {
static let shared = DownloadManager()
private lazy var session: URLSession = {
let config = URLSessionConfiguration.background(
withIdentifier: "com.example.app.background-download"
)
config.isDiscretionary = true
config.sessionSendsLaunchEvents = true
return URLSession(configuration: config, delegate: self, delegateQueue: nil)
}()
func startDownload(from url: URL) {
let task = session.downloadTask(with: url)
task.earliestBeginDate = Date(timeIntervalSinceNow: 60)
task.resume()
}
func urlSession(
_ session: URLSession,
downloadTask: URLSessionDownloadTask,
didFinishDownloadingTo location: URL
) {
// Move file from tmp before this method returns
let dest = FileManager.default.urls(
for: .documentDirectory, in: .userDomainMask
)[0].appendingPathComponent("download.dat")
try? FileManager.default.moveItem(at: location, to: dest)
}
func urlSession(
_ session: URLSession,
task: URLSessionTask,
didCompleteWithError error: (any Error)?
) {
if let error { print("Download failed: \(error)") }
}
}
Handle app relaunch — store and invoke the system completion handler:
// In AppDelegate:
func application(
_ application: UIApplication,
handleEventsForBackgroundURLSession identifier: String,
completionHandler: @escaping () -> Void
) {
backgroundSessionCompletionHandler = completionHandler
}
// In URLSessionDelegate — call stored handler when events finish:
func urlSessionDidFinishEvents(forBackgroundURLSession session: URLSession) {
Task { @MainActor in
self.backgroundSessionCompletionHandler?()
self.backgroundSessionCompletionHandler = nil
}
}
Silent push notifications wake your app briefly to fetch new content. Set
content-available: 1 in the push payload.
{ "aps": { "content-available": 1 }, "custom-data": "new-messages" }
Send the APNs request with apns-push-type: background and
apns-priority: 5. Background push delivery is low priority and not
guaranteed; keep sends infrequent, generally no more than two or three per
hour.
Handle in AppDelegate:
func application(
_ application: UIApplication,
didReceiveRemoteNotification userInfo: [AnyHashable: Any],
fetchCompletionHandler completionHandler:
@escaping (UIBackgroundFetchResult) -> Void
) {
Task {
do {
let hasNew = try await MessageStore.shared.fetchNewMessages()
completionHandler(hasNew ? .newData : .noData)
} catch {
completionHandler(.failed)
}
}
}
Enable "Remote notifications" in Background Modes and register:
UIApplication.shared.registerForRemoteNotifications()
// DON'T: Submit a task whose identifier isn't in BGTaskSchedulerPermittedIdentifiers
let request = BGAppRefreshTaskRequest(identifier: "com.example.app.refresh")
try BGTaskScheduler.shared.submit(request) // Throws .notPermitted
// DO: Add every identifier to Info.plist BGTaskSchedulerPermittedIdentifiers
// <string>com.example.app.refresh</string>
// DON'T: Return without marking completion -- system penalizes future scheduling
func handleRefresh(task: BGAppRefreshTask) {
Task {
let data = try await fetchData()
await store.update(data)
// Missing: task.setTaskCompleted(success:)
}
}
// DO: Always call setTaskCompleted on every code path
func handleRefresh(task: BGAppRefreshTask) {
let work = Task {
do {
let data = try await fetchData()
await store.update(data)
task.setTaskCompleted(success: true)
} catch {
task.setTaskCompleted(success: false)
}
}
task.expirationHandler = {
work.cancel()
task.setTaskCompleted(success: false)
}
}
// DON'T: Assume your task will run to completion
func handleCleanup(task: BGProcessingTask) {
Task { await heavyWork() }
// No expirationHandler -- system terminates ungracefully
}
// DO: Set expirationHandler to cancel work and mark completed
func handleCleanup(task: BGProcessingTask) {
let work = Task { await heavyWork() }
task.expirationHandler = {
work.cancel()
task.setTaskCompleted(success: false)
}
}
// DON'T: Request refresh every minute -- system throttles aggressively
request.earliestBeginDate = Date(timeIntervalSinceNow: 60)
// DO: Use reasonable intervals (15+ minutes for refresh)
request.earliestBeginDate = Date(timeIntervalSinceNow: 15 * 60)
// earliestBeginDate is a hint -- the system chooses actual launch time
// DON'T: Start a 10-minute operation assuming it will finish
func handleRefresh(task: BGAppRefreshTask) {
Task { await tenMinuteSync() }
}
// DO: Design work to be incremental and cancellable
func handleRefresh(task: BGAppRefreshTask) {
let work = Task {
for batch in batches {
try Task.checkCancellation()
await processBatch(batch)
await saveBatchProgress(batch)
}
task.setTaskCompleted(success: true)
}
task.expirationHandler = {
work.cancel()
task.setTaskCompleted(success: false)
}
}
BGTaskSchedulerPermittedIdentifiersUIBackgroundModes enabled (fetch, processing)setTaskCompleted(success:) called on every code pathexpirationHandler set and cancels in-flight workearliestBeginDate uses reasonable intervals and is treated as a hintdidFinishDownloadingTo before returnhandleEventsForBackgroundURLSession stores and calls completion handlercontent-available: 1apns-push-type: background and apns-priority: 5fetchCompletionHandler called promptly with correct resultProgressReportingTask.checkCancellation())development
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