Files
bitchat/bitchatTests/NostrProtocolTests.swift
T
e6903456ab NIP‑17/44: XChaCha20 v2 gift wraps, DM kind=14, receipts + UI fixes (#506)
* NIP-17/44: adopt NIP-44 v2 (XChaCha20-Poly1305, v2: base64url), switch rumor kind to 14, randomize BIP-340 aux; add XChaCha20Poly1305Compat and wire-up

* Nostr DMs: ensure delivered/read acks are sent even without Noise key mapping by falling back to direct Nostr (geohash-style) acks to sender pubkey

* NIP-44 v2 decrypt: try both Y parities for x-only sender pubkeys (even then odd) to fix unwrap authentication failures

* Tests: add NIP-44 v2 ACK round-trip tests (delivered/read) using bitchat1 embedding and gift-wrap decrypt path

* UI: fix DM autoscroll IDs by using dm:<peer>|<id> for private chat item IDs and preserve anchors, ensuring scrollTo targets exist when opening/switching/new messages

* UI: fix string interpolation in DM/geohash context keys (remove escaped interpolation) to resolve 'unused ch' warnings and ensure proper IDs

* UI: MeshPeerList shows transport state icon: radio for mesh-connected, purple globe for mutual favorite/Nostr; fallback dim person for others

---------

Co-authored-by: jack <jackjackbits@users.noreply.github.com>
2025-08-24 17:56:43 +02:00

221 lines
8.1 KiB
Swift

//
// NostrProtocolTests.swift
// bitchatTests
//
// Tests for NIP-17 gift-wrapped private messages
//
import XCTest
import CryptoKit
@testable import bitchat
final class NostrProtocolTests: XCTestCase {
override func setUp() {
super.setUp()
// SecureLogger is always enabled
}
func testNIP17MessageRoundTrip() throws {
// Create sender and recipient identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
print("Sender pubkey: \(sender.publicKeyHex)")
print("Recipient pubkey: \(recipient.publicKeyHex)")
// Create a test message
let originalContent = "Hello from NIP-17 test!"
// Create encrypted gift wrap
let giftWrap = try NostrProtocol.createPrivateMessage(
content: originalContent,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
print("Gift wrap created with ID: \(giftWrap.id)")
print("Gift wrap pubkey: \(giftWrap.pubkey)")
// Decrypt the gift wrap
let (decryptedContent, senderPubkey, timestamp) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
recipientIdentity: recipient
)
// Verify
XCTAssertEqual(decryptedContent, originalContent)
XCTAssertEqual(senderPubkey, sender.publicKeyHex)
// Verify timestamp is reasonable (within last minute)
let messageDate = Date(timeIntervalSince1970: TimeInterval(timestamp))
let timeDiff = abs(messageDate.timeIntervalSinceNow)
XCTAssertLessThan(timeDiff, 60, "Message timestamp should be recent")
print("✅ Successfully decrypted message: '\(decryptedContent)' from \(senderPubkey) at \(messageDate)")
}
func testGiftWrapUsesUniqueEphemeralKeys() throws {
// Create identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
// Create two messages
let message1 = try NostrProtocol.createPrivateMessage(
content: "Message 1",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
let message2 = try NostrProtocol.createPrivateMessage(
content: "Message 2",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
// Gift wrap pubkeys should be different (unique ephemeral keys)
XCTAssertNotEqual(message1.pubkey, message2.pubkey)
print("Message 1 gift wrap pubkey: \(message1.pubkey)")
print("Message 2 gift wrap pubkey: \(message2.pubkey)")
// Both should decrypt successfully
let (content1, _, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: message1,
recipientIdentity: recipient
)
let (content2, _, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: message2,
recipientIdentity: recipient
)
XCTAssertEqual(content1, "Message 1")
XCTAssertEqual(content2, "Message 2")
}
func testDecryptionFailsWithWrongRecipient() throws {
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let wrongRecipient = try NostrIdentity.generate()
// Create message for recipient
let giftWrap = try NostrProtocol.createPrivateMessage(
content: "Secret message",
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
// Try to decrypt with wrong recipient
XCTAssertThrowsError(try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
recipientIdentity: wrongRecipient
)) { error in
print("Expected error when decrypting with wrong key: \(error)")
}
}
func testAckRoundTripNIP44V2_Delivered() throws {
// Identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
// Build a DELIVERED ack embedded payload (geohash-style, no recipient peer ID)
let messageID = "TEST-MSG-DELIVERED-1"
let senderPeerID = "0123456789abcdef" // 8-byte hex peer ID
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .delivered, messageID: messageID, senderPeerID: senderPeerID) else {
XCTFail("Failed to embed delivered ack")
return
}
// Create NIP-17 gift wrap to recipient (uses NIP-44 v2 internally)
let giftWrap = try NostrProtocol.createPrivateMessage(
content: embedded,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
// Ensure v2 format was used for ciphertext
XCTAssertTrue(giftWrap.content.hasPrefix("v2:"))
// Decrypt as recipient
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
recipientIdentity: recipient
)
// Verify sender is correct
XCTAssertEqual(senderPubkey, sender.publicKeyHex)
// Parse BitChat payload
XCTAssertTrue(content.hasPrefix("bitchat1:"))
let base64url = String(content.dropFirst("bitchat1:".count))
guard let packetData = Self.base64URLDecode(base64url),
let packet = BitchatPacket.from(packetData) else {
return XCTFail("Failed to decode bitchat packet")
}
XCTAssertEqual(packet.type, MessageType.noiseEncrypted.rawValue)
guard let payload = NoisePayload.decode(packet.payload) else {
return XCTFail("Failed to decode NoisePayload")
}
switch payload.type {
case .delivered:
let mid = String(data: payload.data, encoding: .utf8)
XCTAssertEqual(mid, messageID)
default:
XCTFail("Unexpected payload type: \(payload.type)")
}
}
func testAckRoundTripNIP44V2_ReadReceipt() throws {
// Identities
let sender = try NostrIdentity.generate()
let recipient = try NostrIdentity.generate()
let messageID = "TEST-MSG-READ-1"
let senderPeerID = "fedcba9876543210" // 8-byte hex peer ID
guard let embedded = NostrEmbeddedBitChat.encodeAckForNostrNoRecipient(type: .readReceipt, messageID: messageID, senderPeerID: senderPeerID) else {
XCTFail("Failed to embed read ack")
return
}
let giftWrap = try NostrProtocol.createPrivateMessage(
content: embedded,
recipientPubkey: recipient.publicKeyHex,
senderIdentity: sender
)
XCTAssertTrue(giftWrap.content.hasPrefix("v2:"))
let (content, senderPubkey, _) = try NostrProtocol.decryptPrivateMessage(
giftWrap: giftWrap,
recipientIdentity: recipient
)
XCTAssertEqual(senderPubkey, sender.publicKeyHex)
XCTAssertTrue(content.hasPrefix("bitchat1:"))
let base64url = String(content.dropFirst("bitchat1:".count))
guard let packetData = Self.base64URLDecode(base64url),
let packet = BitchatPacket.from(packetData) else {
return XCTFail("Failed to decode bitchat packet")
}
XCTAssertEqual(packet.type, MessageType.noiseEncrypted.rawValue)
guard let payload = NoisePayload.decode(packet.payload) else {
return XCTFail("Failed to decode NoisePayload")
}
switch payload.type {
case .readReceipt:
let mid = String(data: payload.data, encoding: .utf8)
XCTAssertEqual(mid, messageID)
default:
XCTFail("Unexpected payload type: \(payload.type)")
}
}
// MARK: - Helpers
private static func base64URLDecode(_ s: String) -> Data? {
var str = s.replacingOccurrences(of: "-", with: "+").replacingOccurrences(of: "_", with: "/")
let rem = str.count % 4
if rem > 0 { str.append(String(repeating: "=", count: 4 - rem)) }
return Data(base64Encoded: str)
}
}