Files
bitchat/bitchat/Nostr/XChaCha20Poly1305Compat.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

117 lines
4.7 KiB
Swift

import Foundation
import CryptoKit
/// Minimal XChaCha20-Poly1305 compatibility wrapper using CryptoKit's ChaChaPoly.
/// Implements HChaCha20 to derive a subkey and reduces the 24-byte nonce to a 12-byte nonce
/// as per XChaCha20 construction.
enum XChaCha20Poly1305Compat {
struct SealBox {
let ciphertext: Data
let tag: Data
}
static func seal(plaintext: Data, key: Data, nonce24: Data, aad: Data? = nil) throws -> SealBox {
precondition(key.count == 32, "XChaCha20 key must be 32 bytes")
precondition(nonce24.count == 24, "XChaCha20 nonce must be 24 bytes")
let subkey = hchacha20(key: key, nonce16: nonce24.prefix(16))
let nonce12 = derive12ByteNonce(from24: nonce24)
let chachaKey = SymmetricKey(data: subkey)
let nonce = try ChaChaPoly.Nonce(data: nonce12)
let sealed = try ChaChaPoly.seal(plaintext, using: chachaKey, nonce: nonce, authenticating: aad ?? Data())
return SealBox(ciphertext: sealed.ciphertext, tag: sealed.tag)
}
static func open(ciphertext: Data, tag: Data, key: Data, nonce24: Data, aad: Data? = nil) throws -> Data {
precondition(key.count == 32, "XChaCha20 key must be 32 bytes")
precondition(nonce24.count == 24, "XChaCha20 nonce must be 24 bytes")
let subkey = hchacha20(key: key, nonce16: nonce24.prefix(16))
let nonce12 = derive12ByteNonce(from24: nonce24)
let chachaKey = SymmetricKey(data: subkey)
let box = try ChaChaPoly.SealedBox(nonce: ChaChaPoly.Nonce(data: nonce12), ciphertext: ciphertext, tag: tag)
return try ChaChaPoly.open(box, using: chachaKey, authenticating: aad ?? Data())
}
// MARK: - Internals
private static func derive12ByteNonce(from24 nonce24: Data) -> Data {
// XChaCha20-Poly1305: 12-byte nonce = 4 zero bytes || last 8 bytes of the 24-byte nonce
var out = Data(count: 12)
out.replaceSubrange(0..<4, with: [0, 0, 0, 0])
out.replaceSubrange(4..<12, with: nonce24.suffix(8))
return out
}
private static func hchacha20(key: Data, nonce16: Data) -> Data {
// HChaCha20 based on the original ChaCha20 core with a 16-byte nonce.
precondition(key.count == 32)
precondition(nonce16.count == 16)
// Constants "expand 32-byte k"
var state: [UInt32] = [
0x61707865, 0x3320646e, 0x79622d32, 0x6b206574,
// key (8 words)
key.loadLEWord(0), key.loadLEWord(4), key.loadLEWord(8), key.loadLEWord(12),
key.loadLEWord(16), key.loadLEWord(20), key.loadLEWord(24), key.loadLEWord(28),
// nonce (4 words)
nonce16.loadLEWord(0), nonce16.loadLEWord(4), nonce16.loadLEWord(8), nonce16.loadLEWord(12)
]
// 20 rounds (10 double rounds)
for _ in 0..<10 {
// Column rounds
quarterRound(&state, 0, 4, 8, 12)
quarterRound(&state, 1, 5, 9, 13)
quarterRound(&state, 2, 6, 10, 14)
quarterRound(&state, 3, 7, 11, 15)
// Diagonal rounds
quarterRound(&state, 0, 5, 10, 15)
quarterRound(&state, 1, 6, 11, 12)
quarterRound(&state, 2, 7, 8, 13)
quarterRound(&state, 3, 4, 9, 14)
}
// Output subkey: state[0..3] and state[12..15]
var out = Data(count: 32)
out.storeLEWord(state[0], at: 0)
out.storeLEWord(state[1], at: 4)
out.storeLEWord(state[2], at: 8)
out.storeLEWord(state[3], at: 12)
out.storeLEWord(state[12], at: 16)
out.storeLEWord(state[13], at: 20)
out.storeLEWord(state[14], at: 24)
out.storeLEWord(state[15], at: 28)
return out
}
private static func quarterRound(_ s: inout [UInt32], _ a: Int, _ b: Int, _ c: Int, _ d: Int) {
s[a] = s[a] &+ s[b]; s[d] ^= s[a]; s[d] = (s[d] << 16) | (s[d] >> 16)
s[c] = s[c] &+ s[d]; s[b] ^= s[c]; s[b] = (s[b] << 12) | (s[b] >> 20)
s[a] = s[a] &+ s[b]; s[d] ^= s[a]; s[d] = (s[d] << 8) | (s[d] >> 24)
s[c] = s[c] &+ s[d]; s[b] ^= s[c]; s[b] = (s[b] << 7) | (s[b] >> 25)
}
}
private extension Data {
func loadLEWord(_ offset: Int) -> UInt32 {
let range = offset..<(offset+4)
let bytes = self[range]
return bytes.withUnsafeBytes { ptr -> UInt32 in
let b = ptr.bindMemory(to: UInt8.self)
return UInt32(b[0]) | (UInt32(b[1]) << 8) | (UInt32(b[2]) << 16) | (UInt32(b[3]) << 24)
}
}
mutating func storeLEWord(_ value: UInt32, at offset: Int) {
let bytes: [UInt8] = [
UInt8(value & 0xff),
UInt8((value >> 8) & 0xff),
UInt8((value >> 16) & 0xff),
UInt8((value >> 24) & 0xff)
]
replaceSubrange(offset..<(offset+4), with: bytes)
}
}