fix: Use stanza receival timestamps to guard against stale kex messages
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@@ -68,6 +68,7 @@ class OmemoDoubleRatchet {
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this.sessionAd,
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this.mkSkipped, // MKSKIPPED
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this.acknowledged,
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this.kexTimestamp,
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);
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factory OmemoDoubleRatchet.fromJson(Map<String, dynamic> data) {
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@@ -85,6 +86,7 @@ class OmemoDoubleRatchet {
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'ik_pub': 'base/64/encoded',
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'session_ad': 'base/64/encoded',
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'acknowledged': true | false,
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'kex_timestamp': int,
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'mkskipped': [
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{
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'key': 'base/64/encoded',
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@@ -129,6 +131,7 @@ class OmemoDoubleRatchet {
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base64.decode(data['session_ad']! as String),
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mkSkipped,
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data['acknowledged']! as bool,
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data['kex_timestamp']! as int,
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);
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}
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@@ -160,14 +163,18 @@ class OmemoDoubleRatchet {
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final Map<SkippedKey, List<int>> mkSkipped;
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/// The point in time at which we performed the kex exchange to create this ratchet.
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/// Precision is milliseconds since epoch.
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int kexTimestamp;
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/// Indicates whether we received an empty OMEMO message after building a session with
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/// the device.
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/// the device.
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bool acknowledged;
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/// Create an OMEMO session using the Signed Pre Key [spk], the shared secret [sk] that
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/// was obtained using a X3DH and the associated data [ad] that was also obtained through
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/// a X3DH. [ik] refers to Bob's (the receiver's) IK public key.
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static Future<OmemoDoubleRatchet> initiateNewSession(OmemoPublicKey spk, OmemoPublicKey ik, List<int> sk, List<int> ad, int pn) async {
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static Future<OmemoDoubleRatchet> initiateNewSession(OmemoPublicKey spk, OmemoPublicKey ik, List<int> sk, List<int> ad, int timestamp) async {
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final dhs = await OmemoKeyPair.generateNewPair(KeyPairType.x25519);
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final dhr = spk;
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final rk = await kdfRk(sk, await omemoDH(dhs, dhr, 0));
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@@ -181,11 +188,12 @@ class OmemoDoubleRatchet {
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null,
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0,
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0,
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pn,
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0,
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ik,
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ad,
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{},
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false,
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timestamp,
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);
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}
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@@ -193,7 +201,7 @@ class OmemoDoubleRatchet {
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/// Pre Key keypair [spk], the shared secret [sk] that was obtained through a X3DH and
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/// the associated data [ad] that was also obtained through a X3DH. [ik] refers to
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/// Alice's (the initiator's) IK public key.
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static Future<OmemoDoubleRatchet> acceptNewSession(OmemoKeyPair spk, OmemoPublicKey ik, List<int> sk, List<int> ad) async {
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static Future<OmemoDoubleRatchet> acceptNewSession(OmemoKeyPair spk, OmemoPublicKey ik, List<int> sk, List<int> ad, int kexTimestamp) async {
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return OmemoDoubleRatchet(
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spk,
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null,
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@@ -207,6 +215,7 @@ class OmemoDoubleRatchet {
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ad,
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{},
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false,
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kexTimestamp,
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);
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}
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@@ -233,6 +242,7 @@ class OmemoDoubleRatchet {
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'session_ad': base64.encode(sessionAd),
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'mkskipped': mkSkippedSerialised,
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'acknowledged': acknowledged,
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'kex_timestamp': kexTimestamp,
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};
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}
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@@ -268,18 +278,18 @@ class OmemoDoubleRatchet {
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}
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Future<void> _dhRatchet(OmemoMessage header) async {
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pn = header.n!;
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pn = ns;
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ns = 0;
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nr = 0;
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dhr = OmemoPublicKey.fromBytes(header.dhPub!, KeyPairType.x25519);
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final newRk = await kdfRk(rk, await omemoDH(dhs, dhr!, 0));
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rk = newRk;
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ckr = newRk;
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rk = List.from(newRk);
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ckr = List.from(newRk);
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dhs = await OmemoKeyPair.generateNewPair(KeyPairType.x25519);
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final newNewRk = await kdfRk(rk, await omemoDH(dhs, dhr!, 0));
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rk = newNewRk;
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cks = newNewRk;
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rk = List.from(newNewRk);
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cks = List.from(newNewRk);
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}
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/// Encrypt [plaintext] using the Double Ratchet.
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@@ -313,8 +323,8 @@ class OmemoDoubleRatchet {
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}
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final dhPubMatches = listsEqual(
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header.dhPub ?? <int>[],
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await dhr?.getBytes() ?? <int>[],
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header.dhPub!,
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(await dhr?.getBytes()) ?? <int>[],
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);
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if (!dhPubMatches) {
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await _skipMessageKeys(header.pn!);
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@@ -348,6 +358,7 @@ class OmemoDoubleRatchet {
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sessionAd,
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Map<SkippedKey, List<int>>.from(mkSkipped),
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acknowledged,
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kexTimestamp,
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);
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}
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@@ -378,6 +389,7 @@ class OmemoDoubleRatchet {
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ns == other.ns &&
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nr == other.nr &&
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pn == other.pn &&
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listsEqual(sessionAd, other.sessionAd);
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listsEqual(sessionAd, other.sessionAd) &&
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kexTimestamp == other.kexTimestamp;
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}
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}
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@@ -31,14 +31,11 @@ class UnknownSignedPrekeyException implements Exception {
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String errMsg() => 'Unknown Signed Prekey used.';
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}
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/// Triggered by the Session Manager when the received Key Exchange message does not
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/// meet our expectations. This happens when the PN attribute of the message is not equal
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/// to our receive number.
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/// Triggered by the Session Manager when the received Key Exchange message does not meet
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/// the requirement that a key exchange, given that the ratchet already exists, must be
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/// sent after its creation.
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class InvalidKeyExchangeException implements Exception {
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const InvalidKeyExchangeException(this.expectedPn, this.actualPn);
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final int expectedPn;
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final int actualPn;
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String errMsg() => 'The pn attribute of the key exchange is invalid. Expected $expectedPn, got $actualPn';
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String errMsg() => 'The key exchange was sent before the last kex finished';
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}
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/// Triggered by the Session Manager when a message's sequence number is smaller than we
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@@ -73,3 +73,7 @@ OmemoKeyPair? decodeKeyPairIfNotNull(String? pk, String? sk, KeyPairType type) {
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type,
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);
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}
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int getTimestamp() {
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return DateTime.now().millisecondsSinceEpoch;
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}
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@@ -143,7 +143,7 @@ class OmemoSessionManager {
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/// Create a ratchet session initiated by Alice to the user with Jid [jid] and the device
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/// [deviceId] from the bundle [bundle].
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@visibleForTesting
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Future<OmemoKeyExchange> addSessionFromBundle(String jid, int deviceId, OmemoBundle bundle, int pn) async {
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Future<OmemoKeyExchange> addSessionFromBundle(String jid, int deviceId, OmemoBundle bundle) async {
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final device = await getDevice();
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final kexResult = await x3dhFromBundle(
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bundle,
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@@ -154,7 +154,7 @@ class OmemoSessionManager {
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bundle.ik,
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kexResult.sk,
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kexResult.ad,
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pn,
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getTimestamp(),
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);
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await _trustManager.onNewSession(jid, deviceId);
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@@ -201,6 +201,7 @@ class OmemoSessionManager {
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OmemoPublicKey.fromBytes(kex.ik!, KeyPairType.ed25519),
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kexResult.sk,
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kexResult.ad,
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getTimestamp(),
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);
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await _trustManager.onNewSession(jid, deviceId);
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@@ -241,21 +242,10 @@ class OmemoSessionManager {
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final kex = <int, OmemoKeyExchange>{};
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if (newSessions != null) {
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for (final newSession in newSessions) {
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final session = await _getRatchet(
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RatchetMapKey(
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newSession.jid,
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newSession.id,
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),
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);
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final pn = session != null ?
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session.ns :
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0;
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kex[newSession.id] = await addSessionFromBundle(
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newSession.jid,
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newSession.id,
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newSession,
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pn,
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);
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}
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}
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@@ -334,12 +324,15 @@ class OmemoSessionManager {
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/// <keys /> element with a "jid" attribute matching our own. [senderJid] refers to the
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/// bare Jid of the sender. [senderDeviceId] refers to the "sid" attribute of the
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/// <encrypted /> element.
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/// [timestamp] refers to the time the message was sent. This might be either what the
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/// server tells you via "XEP-0203: Delayed Delivery" or the point in time at which
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/// you received the stanza, if no Delayed Delivery element was found.
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///
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/// If the received message is an empty OMEMO message, i.e. there is no <payload />
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/// element, then [ciphertext] must be set to null. In this case, this function
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/// will return null as there is no message to be decrypted. This, however, is used
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/// to set up sessions or advance the ratchets.
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Future<String?> decryptMessage(List<int>? ciphertext, String senderJid, int senderDeviceId, List<EncryptedKey> keys) async {
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Future<String?> decryptMessage(List<int>? ciphertext, String senderJid, int senderDeviceId, List<EncryptedKey> keys, int timestamp) async {
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// Try to find a session we can decrypt with.
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var device = await getDevice();
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final rawKey = keys.firstWhereOrNull((key) => key.rid == device.id);
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@@ -363,8 +356,8 @@ class OmemoSessionManager {
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// Guard against old key exchanges
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if (oldRatchet != null) {
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_log.finest('KEX for existent ratchet. ${oldRatchet.pn}');
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if (message.pn != oldRatchet.nr) {
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throw InvalidKeyExchangeException(oldRatchet.nr, message.pn!);
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if (oldRatchet.kexTimestamp > timestamp) {
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throw InvalidKeyExchangeException();
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}
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}
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@@ -401,12 +394,6 @@ class OmemoSessionManager {
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final ratchet = (await _getRatchet(ratchetKey))!;
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oldRatchet ??= ratchet.clone();
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if (!rawKey.kex) {
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if (message.n! < ratchet.nr - 1) {
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throw MessageAlreadyDecryptedException();
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}
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}
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try {
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if (rawKey.kex) {
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keyAndHmac = await ratchet.ratchetDecrypt(message, authMessage.writeToBuffer());
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