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/core-nfc

@45c9085

Read and write NFC tags using CoreNFC. Use when scanning NDEF tags, reading ISO7816/ISO15693/FeliCa/MIFARE tags, writing NDEF messages, handling NFC session lifecycle, configuring NFC entitlements, or implementing background tag reading in iOS apps.

Use this Skill: https://skilld.dev/gh/dpearson2699/swift-ios-skills/core-nfc

This session only. Nothing lands on disk.

SKILL.md

≈65 tokens always: the name and description. ≈3.2k when used: this file. ≈4.4k more on demand in 2 files.

CoreNFC

Read and write NFC tags on iPhone using the CoreNFC framework. Covers NDEF reader sessions, tag reader sessions, NDEF message construction, entitlements, and background tag reading.

Contents

Setup

Project Configuration

  1. Add the Near Field Communication Tag Reading capability in Xcode
  2. Add NFCReaderUsageDescription to Info.plist with a user-facing reason string
  3. Add the com.apple.developer.nfc.readersession.formats entitlement with the current TAG value; do not add legacy NDEF
  4. For ISO 7816 tags, add supported application identifiers to com.apple.developer.nfc.readersession.iso7816.select-identifiers in Info.plist
  5. For FeliCa tags, add supported system codes to com.apple.developer.nfc.readersession.felica.systemcodes; do not use wildcard system codes

Device Requirements

NFC reading requires iPhone 7 or later. Always check for reader session availability before creating NFC UI or sessions. Use the concrete reader session type you are about to create.

import CoreNFC

guard NFCNDEFReaderSession.readingAvailable else {
    // Device does not support NFC or feature is restricted
    showUnsupportedMessage()
    return
}

Key Types

Type Role
NFCNDEFReaderSession Scans for NDEF-formatted tags
NFCTagReaderSession Scans for ISO7816, ISO15693, FeliCa, MIFARE tags
NFCNDEFMessage Collection of NDEF payload records
NFCNDEFPayload Single record within an NDEF message
NFCNDEFTag Protocol for interacting with an NDEF-capable tag

NDEF Reader Session

Use NFCNDEFReaderSession to read NDEF-formatted data from tags. This is the simplest path for reading standard tag content like URLs, text, and MIME data.

import CoreNFC

final class NDEFReader: NSObject, NFCNDEFReaderSessionDelegate {
    private var session: NFCNDEFReaderSession?

    func beginScanning() {
        guard NFCNDEFReaderSession.readingAvailable else { return }

        session = NFCNDEFReaderSession(
            delegate: self,
            queue: nil,
            invalidateAfterFirstRead: false
        )
        session?.alertMessage = "Hold your iPhone near an NFC tag."
        session?.begin()
    }

    // MARK: - NFCNDEFReaderSessionDelegate

    func readerSessionDidBecomeActive(_ session: NFCNDEFReaderSession) {
        // Session is scanning
    }

    func readerSession(
        _ session: NFCNDEFReaderSession,
        didDetectNDEFs messages: [NFCNDEFMessage]
    ) {
        for message in messages {
            for record in message.records {
                processRecord(record)
            }
        }
    }

    func readerSession(
        _ session: NFCNDEFReaderSession,
        didInvalidateWithError error: Error
    ) {
        let nfcError = error as? NFCReaderError
        if nfcError?.code != .readerSessionInvalidationErrorFirstNDEFTagRead,
           nfcError?.code != .readerSessionInvalidationErrorUserCanceled {
            print("Session invalidated: \(error.localizedDescription)")
        }
        self.session = nil
    }
}

Reading with Tag Connection

For read-write operations, use the tag-detection delegate method to connect to individual tags:

func readerSession(
    _ session: NFCNDEFReaderSession,
    didDetect tags: [any NFCNDEFTag]
) {
    guard let tag = tags.first else {
        session.restartPolling()
        return
    }

    session.connect(to: tag) { error in
        if let error {
            session.invalidate(errorMessage: "Connection failed: \(error)")
            return
        }

        tag.queryNDEFStatus { status, capacity, error in
            guard error == nil else {
                session.invalidate(errorMessage: "Query failed.")
                return
            }

            switch status {
            case .notSupported:
                session.invalidate(errorMessage: "Tag is not NDEF compliant.")
            case .readOnly:
                tag.readNDEF { message, error in
                    if let message {
                        self.processMessage(message)
                    }
                    session.invalidate()
                }
            case .readWrite:
                tag.readNDEF { message, error in
                    if let message {
                        self.processMessage(message)
                    }
                    session.alertMessage = "Tag read successfully."
                    session.invalidate()
                }
            @unknown default:
                session.invalidate()
            }
        }
    }
}

Tag Reader Session

Use NFCTagReaderSession when you need direct access to the native tag protocol (ISO 7816, ISO 15693, FeliCa, or MIFARE).

Polling option Tags
.iso14443 ISO 7816-compatible and MIFARE
.iso15693 ISO 15693
.iso18092 FeliCa

Do not use this session for payment-related AIDs. Load nfc-patterns.md for protocol-specific connection, APDU, command, and response handling.

Writing NDEF Messages

Write NDEF data to a connected tag. Always check readWrite status first.

func writeToTag(
    tag: any NFCNDEFTag,
    session: NFCNDEFReaderSession,
    url: URL
) {
    tag.queryNDEFStatus { status, capacity, error in
        guard status == .readWrite else {
            session.invalidate(errorMessage: "Tag is read-only.")
            return
        }

        guard let payload = NFCNDEFPayload.wellKnownTypeURIPayload(
            url: url
        ) else {
            session.invalidate(errorMessage: "Invalid URL.")
            return
        }

        let message = NFCNDEFMessage(records: [payload])

        tag.writeNDEF(message) { error in
            if let error {
                session.invalidate(
                    errorMessage: "Write failed: \(error.localizedDescription)"
                )
            } else {
                session.alertMessage = "Tag written successfully."
                session.invalidate()
            }
        }
    }
}

NDEF Payload Types

Creating Common Payloads

// URL payload
let urlPayload = NFCNDEFPayload.wellKnownTypeURIPayload(
    url: URL(string: "https://example.com")!
)

// Text payload
let textPayload = NFCNDEFPayload.wellKnownTypeTextPayload(
    string: "Hello NFC",
    locale: Locale(identifier: "en")
)

// Custom payload
let customPayload = NFCNDEFPayload(
    format: .nfcExternal,
    type: "com.example:mytype".data(using: .utf8)!,
    identifier: Data(),
    payload: "custom-data".data(using: .utf8)!
)

Parsing Payload Content

Load Parsing NDEF Payload Content for the complete type-name-format switch and multi-record handling.

Background Tag Reading

On iPhone XS and later, iOS can read NFC tags in the background without opening your app. The NDEF message must contain a URI record (typeNameFormat == .nfcWellKnown, type U). If there are multiple URI records, the system uses the first one.

For app-specific routing, write a universal link to the tag and configure the Associated Domains capability for that domain. Background tag reading also supports specific system URL schemes such as web, email, SMS, telephone, FaceTime, Maps, and HomeKit setup. It does not support custom URL schemes, and the system does not route by bundle ID or arbitrary NDEF content type.

When a user taps a compatible tag, iOS displays a notification that opens your app. Handle the tag data via NSUserActivity:

func scene(
    _ scene: UIScene,
    continue userActivity: NSUserActivity
) {
    guard userActivity.activityType ==
        NSUserActivityTypeBrowsingWeb else { return }

    let message = userActivity.ndefMessagePayload
    guard message.records.first?.typeNameFormat != .empty else { return }

    for record in message.records {
        processRecord(record)
    }
}

Common Mistakes

DON'T: Use stale or missing NFC entitlements

Without the com.apple.developer.nfc.readersession.formats entitlement, reader sessions cannot access NFC hardware. Use the current TAG value for Core NFC reader sessions; do not copy older examples that add NDEF.

DON'T: Ignore session invalidation errors

The session invalidates for multiple reasons. Distinguishing user cancellation from real errors prevents false error alerts.

// WRONG -- shows error when user cancels
func readerSession(
    _ session: NFCNDEFReaderSession,
    didInvalidateWithError error: Error
) {
    showAlert("NFC Error: \(error.localizedDescription)")
}

// CORRECT -- filter expected invalidation reasons
func readerSession(
    _ session: NFCNDEFReaderSession,
    didInvalidateWithError error: Error
) {
    let nfcError = error as? NFCReaderError
    switch nfcError?.code {
    case .readerSessionInvalidationErrorUserCanceled,
         .readerSessionInvalidationErrorFirstNDEFTagRead:
        break  // Normal termination
    default:
        showAlert("NFC Error: \(error.localizedDescription)")
    }
    self.session = nil
}

DON'T: Hold a strong reference to a stale session

Once a session is invalidated, it cannot be restarted. Nil out your reference and create a new session for the next scan.

// WRONG -- reusing invalidated session
func scanAgain() {
    session?.begin()  // Does nothing, session is dead
}

// CORRECT -- create a new session
func scanAgain() {
    session = NFCNDEFReaderSession(
        delegate: self, queue: nil, invalidateAfterFirstRead: false
    )
    session?.begin()
}

Review Checklist

  • NFC capability added in Signing & Capabilities
  • NFCReaderUsageDescription set in Info.plist
  • com.apple.developer.nfc.readersession.formats entitlement uses TAG, not legacy NDEF
  • NFCNDEFReaderSession.readingAvailable or NFCTagReaderSession.readingAvailable checked before creating sessions
  • Session delegate set before calling begin()
  • Session reference set to nil after invalidation
  • didInvalidateWithError distinguishes user cancellation from actual errors
  • NDEF status queried before write operations
  • Tag capacity checked before writing large messages
  • ISO 7816 application identifiers listed in Info.plist if using NFCTagReaderSession
  • FeliCa system codes listed in Info.plist when polling .iso18092
  • Background tag reading uses a URI NDEF record and universal links or supported system URL schemes
  • Custom URL schemes, bundle IDs, or arbitrary NDEF content types are not used for background routing
  • Payment-related AIDs are routed away from NFCTagReaderSession
  • Only one reader session active at a time

References

Source: SKILL.md on GitHub

No alerts16d5 checks · Risk SAFE
  • Gen Agent Trust Hub16d

    The skill provides comprehensive instructions for iOS NFC development using the Core NFC framework. It is technically sound but contains logic for processing untrusted data from external NFC tags, which represents a potential surface for indirect prompt injection if an agent is tasked with interpreting or acting upon the scanned content.

  • Socket16d

    No alerts

  • Snyk16d

    Risk: LOW · No issues

  • Runlayer6mo

    2 files scanned · No issues

  • ZeroLeaks5mo

    Score: 93/100 · 2 sections analyzed

Signed by skilld at 45c9085. This ties the file your Agent reads to that commit on GitHub. It does not review the instructions.

Last checked against GitHub 2 days ago.

Steadyupdated 3 months ago
  • nfc
  • corenfce
  • ios
  • swift
  • ndef
  • iso7816
  • iso15693
  • mifare
  • felica
  • tag-reading

README badge

README badge for dpearson2699/swift-ios-skills/core-nfc

Reads and writes NFC tags on iPhone using the CoreNFC framework, supporting NDEF messages, ISO 7816, ISO 15693, FeliCa, and MIFARE protocols. Covers session lifecycle, tag connection, NDEF payload construction, and background tag reading for iOS 7 and later.

Generated from the current SKILL.md.

What iOS versions and devices are supported?
NFC reading requires iPhone 7 or later. The skill targets Swift 6.3 and iOS 26+. Background tag reading requires iPhone XS or later.
Do I need to configure entitlements and Info.plist?
Yes. You must add the Near Field Communication Tag Reading capability in Xcode, add NFCReaderUsageDescription to Info.plist, and configure the com.apple.developer.nfc.readersession.formats entitlement. For ISO 7816 tags, also add com.apple.developer.nfc.readersession.iso7816.select-identifiers.
What tag types does this skill cover?
The skill covers NDEF tags, ISO7816, ISO15693, FeliCa, and MIFARE tags. NDEF reader sessions handle formatted tags with URLs, text, and MIME data. Tag reader sessions provide direct access to native protocols.
Can I write to NFC tags with this skill?
Yes. The skill includes examples for writing NDEF messages to tags with read-write status. You must check queryNDEFStatus before attempting a write.
Does this skill cover background NFC reading?
Yes, on iPhone XS and later. The skill explains how to register for background tag reading via associated domains and handle tag data through NSUserActivity when a user taps a compatible tag.

Generated from the current SKILL.md. These answers refresh after source changes.