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336 lines
14 KiB
Swift
336 lines
14 KiB
Swift
// Copyright © 2022 Rangeproof Pty Ltd. All rights reserved.
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import Foundation
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import GRDB
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import Sodium
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import SessionUtilitiesKit
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import SessionSnodeKit
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public enum MessageReceiver {
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private static var lastEncryptionKeyPairRequest: [String: Date] = [:]
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public static func parse(
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_ db: Database,
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envelope: SNProtoEnvelope,
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serverExpirationTimestamp: TimeInterval?,
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openGroupId: String?,
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openGroupMessageServerId: Int64?,
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openGroupServerPublicKey: String?,
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isOutgoing: Bool? = nil,
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otherBlindedPublicKey: String? = nil,
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dependencies: SMKDependencies = SMKDependencies()
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) throws -> (Message, SNProtoContent, String, SessionThread.Variant) {
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let userPublicKey: String = getUserHexEncodedPublicKey(db, dependencies: dependencies)
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let isOpenGroupMessage: Bool = (openGroupId != nil)
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// Decrypt the contents
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guard let ciphertext = envelope.content else { throw MessageReceiverError.noData }
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var plaintext: Data
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var sender: String
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var groupPublicKey: String? = nil
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if isOpenGroupMessage {
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(plaintext, sender) = (envelope.content!, envelope.source!)
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}
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else {
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switch envelope.type {
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case .sessionMessage:
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// Default to 'standard' as the old code didn't seem to require an `envelope.source`
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switch (SessionId.Prefix(from: envelope.source) ?? .standard) {
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case .standard, .unblinded:
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guard let userX25519KeyPair: KeyPair = Identity.fetchUserKeyPair(db) else {
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throw MessageReceiverError.noUserX25519KeyPair
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}
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(plaintext, sender) = try decryptWithSessionProtocol(ciphertext: ciphertext, using: userX25519KeyPair)
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case .blinded:
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guard let otherBlindedPublicKey: String = otherBlindedPublicKey else {
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throw MessageReceiverError.noData
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}
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guard let openGroupServerPublicKey: String = openGroupServerPublicKey else {
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throw MessageReceiverError.invalidGroupPublicKey
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}
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guard let userEd25519KeyPair: KeyPair = Identity.fetchUserEd25519KeyPair(db) else {
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throw MessageReceiverError.noUserED25519KeyPair
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}
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(plaintext, sender) = try decryptWithSessionBlindingProtocol(
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data: ciphertext,
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isOutgoing: (isOutgoing == true),
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otherBlindedPublicKey: otherBlindedPublicKey,
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with: openGroupServerPublicKey,
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userEd25519KeyPair: userEd25519KeyPair,
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using: dependencies
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)
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}
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case .closedGroupMessage:
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guard
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let hexEncodedGroupPublicKey = envelope.source,
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let closedGroup: ClosedGroup = try? ClosedGroup.fetchOne(db, id: hexEncodedGroupPublicKey)
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else {
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throw MessageReceiverError.invalidGroupPublicKey
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}
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guard
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let encryptionKeyPairs: [ClosedGroupKeyPair] = try? closedGroup.keyPairs
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.order(ClosedGroupKeyPair.Columns.receivedTimestamp.desc)
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.fetchAll(db),
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!encryptionKeyPairs.isEmpty
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else {
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throw MessageReceiverError.noGroupKeyPair
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}
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// Loop through all known group key pairs in reverse order (i.e. try the latest key
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// pair first (which'll more than likely be the one we want) but try older ones in
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// case that didn't work)
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func decrypt(keyPairs: [ClosedGroupKeyPair], lastError: Error? = nil) throws -> (Data, String) {
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guard let keyPair: ClosedGroupKeyPair = keyPairs.first else {
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throw (lastError ?? MessageReceiverError.decryptionFailed)
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}
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do {
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return try decryptWithSessionProtocol(
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ciphertext: ciphertext,
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using: KeyPair(
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publicKey: keyPair.publicKey.bytes,
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secretKey: keyPair.secretKey.bytes
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)
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)
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}
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catch {
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return try decrypt(keyPairs: Array(keyPairs.suffix(from: 1)), lastError: error)
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}
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}
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groupPublicKey = hexEncodedGroupPublicKey
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(plaintext, sender) = try decrypt(keyPairs: encryptionKeyPairs)
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default: throw MessageReceiverError.unknownEnvelopeType
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}
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}
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// Don't process the envelope any further if the sender is blocked
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guard (try? Contact.fetchOne(db, id: sender))?.isBlocked != true else {
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throw MessageReceiverError.senderBlocked
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}
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// Parse the proto
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let proto: SNProtoContent
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do {
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proto = try SNProtoContent.parseData(plaintext.removePadding())
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}
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catch {
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SNLog("Couldn't parse proto due to error: \(error).")
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throw error
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}
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// Parse the message
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guard let message: Message = Message.createMessageFrom(proto, sender: sender) else {
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throw MessageReceiverError.unknownMessage
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}
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// Ignore self sends if needed
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guard message.isSelfSendValid || sender != userPublicKey else {
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throw MessageReceiverError.selfSend
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}
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// Guard against control messages in open groups
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guard !isOpenGroupMessage || message is VisibleMessage else {
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throw MessageReceiverError.invalidMessage
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}
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// Finish parsing
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message.sender = sender
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message.recipient = userPublicKey
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message.sentTimestamp = envelope.timestamp
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message.receivedTimestamp = UInt64(SnodeAPI.currentOffsetTimestampMs())
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message.openGroupServerMessageId = openGroupMessageServerId.map { UInt64($0) }
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// Validate
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var isValid: Bool = message.isValid
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if message is VisibleMessage && !isValid && proto.dataMessage?.attachments.isEmpty == false {
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isValid = true
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}
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guard isValid else {
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throw MessageReceiverError.invalidMessage
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}
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// Extract the proper threadId for the message
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let (threadId, threadVariant): (String, SessionThread.Variant) = {
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if let groupPublicKey: String = groupPublicKey { return (groupPublicKey, .legacyGroup) }
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if let openGroupId: String = openGroupId { return (openGroupId, .community) }
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switch message {
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case let message as VisibleMessage: return ((message.syncTarget ?? sender), .contact)
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case let message as ExpirationTimerUpdate: return ((message.syncTarget ?? sender), .contact)
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default: return (sender, .contact)
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}
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}()
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return (message, proto, threadId, threadVariant)
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}
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// MARK: - Handling
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public static func handle(
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_ db: Database,
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threadId: String,
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threadVariant: SessionThread.Variant,
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message: Message,
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serverExpirationTimestamp: TimeInterval?,
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associatedWithProto proto: SNProtoContent,
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dependencies: SMKDependencies = SMKDependencies()
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) throws {
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// Check if the message requires an existing conversation (if it does and the conversation isn't in
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// the config then the message will be dropped)
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guard
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!Message.requiresExistingConversation(message: message, threadVariant: threadVariant) ||
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SessionUtil.conversationInConfig(db, threadId: threadId, threadVariant: threadVariant, visibleOnly: false)
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else { throw MessageReceiverError.requiredThreadNotInConfig }
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switch message {
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case let message as ReadReceipt:
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try MessageReceiver.handleReadReceipt(
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db,
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message: message,
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serverExpirationTimestamp: serverExpirationTimestamp
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)
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case let message as TypingIndicator:
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try MessageReceiver.handleTypingIndicator(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message
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)
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case let message as ClosedGroupControlMessage:
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try MessageReceiver.handleClosedGroupControlMessage(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message
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)
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case let message as DataExtractionNotification:
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try MessageReceiver.handleDataExtractionNotification(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message
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)
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case let message as ExpirationTimerUpdate:
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try MessageReceiver.handleExpirationTimerUpdate(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message
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)
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case let message as ConfigurationMessage:
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try MessageReceiver.handleLegacyConfigurationMessage(db, message: message)
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case let message as UnsendRequest:
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try MessageReceiver.handleUnsendRequest(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message
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)
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case let message as CallMessage:
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try MessageReceiver.handleCallMessage(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message
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)
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case let message as MessageRequestResponse:
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try MessageReceiver.handleMessageRequestResponse(
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db,
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message: message,
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dependencies: dependencies
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)
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case let message as VisibleMessage:
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try MessageReceiver.handleVisibleMessage(
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db,
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threadId: threadId,
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threadVariant: threadVariant,
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message: message,
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associatedWithProto: proto
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)
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// SharedConfigMessages should be handled by the 'SharedUtil' instead of this
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case is SharedConfigMessage: throw MessageReceiverError.invalidSharedConfigMessageHandling
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default: fatalError()
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}
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// Perform any required post-handling logic
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try MessageReceiver.postHandleMessage(db, threadId: threadId, message: message)
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}
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public static func postHandleMessage(
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_ db: Database,
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threadId: String,
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message: Message
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) throws {
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// When handling any non-typing indicator message we want to make sure the thread becomes
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// visible (the only other spot this flag gets set is when sending messages)
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switch message {
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case is TypingIndicator: break
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default:
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// Only update the `shouldBeVisible` flag if the thread is currently not visible
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// as we don't want to trigger a config update if not needed
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let isCurrentlyVisible: Bool = try SessionThread
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.filter(id: threadId)
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.select(.shouldBeVisible)
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.asRequest(of: Bool.self)
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.fetchOne(db)
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.defaulting(to: false)
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guard !isCurrentlyVisible else { return }
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try SessionThread
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.filter(id: threadId)
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.updateAllAndConfig(
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db,
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SessionThread.Columns.shouldBeVisible.set(to: true)
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)
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}
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}
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public static func handleOpenGroupReactions(
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_ db: Database,
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threadId: String,
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openGroupMessageServerId: Int64,
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openGroupReactions: [Reaction]
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) throws {
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guard let interactionId: Int64 = try? Interaction
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.select(.id)
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.filter(Interaction.Columns.threadId == threadId)
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.filter(Interaction.Columns.openGroupServerMessageId == openGroupMessageServerId)
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.asRequest(of: Int64.self)
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.fetchOne(db)
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else {
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throw MessageReceiverError.invalidMessage
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}
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_ = try Reaction
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.filter(Reaction.Columns.interactionId == interactionId)
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.deleteAll(db)
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for reaction in openGroupReactions {
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try reaction.with(interactionId: interactionId).insert(db)
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}
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}
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}
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