package announce import ( "crypto/ed25519" "crypto/sha256" "encoding/binary" "errors" "log" "sync" "time" "github.com/Sudo-Ivan/reticulum-go/pkg/common" "github.com/Sudo-Ivan/reticulum-go/pkg/identity" ) const ( PACKET_TYPE_DATA = 0x00 PACKET_TYPE_ANNOUNCE = 0x01 PACKET_TYPE_LINK = 0x02 PACKET_TYPE_PROOF = 0x03 // Announce Types ANNOUNCE_NONE = 0x00 ANNOUNCE_PATH = 0x01 ANNOUNCE_IDENTITY = 0x02 // Header Types HEADER_TYPE_1 = 0x00 // One address field HEADER_TYPE_2 = 0x01 // Two address fields // Propagation Types PROP_TYPE_BROADCAST = 0x00 PROP_TYPE_TRANSPORT = 0x01 DEST_TYPE_SINGLE = 0x00 DEST_TYPE_GROUP = 0x01 DEST_TYPE_PLAIN = 0x02 DEST_TYPE_LINK = 0x03 // IFAC Flag IFAC_NONE = 0x00 IFAC_AUTH = 0x80 MAX_HOPS = 128 PROPAGATION_RATE = 0.02 // 2% of interface bandwidth RETRY_INTERVAL = 300 // 5 minutes MAX_RETRIES = 3 ) type AnnounceHandler interface { AspectFilter() []string ReceivedAnnounce(destinationHash []byte, announcedIdentity *identity.Identity, appData []byte) error ReceivePathResponses() bool } type Announce struct { mutex sync.RWMutex destinationHash []byte identity *identity.Identity appData []byte hops uint8 timestamp int64 signature []byte pathResponse bool retries int handlers []AnnounceHandler ratchetID []byte } func New(dest *identity.Identity, appData []byte, pathResponse bool) (*Announce, error) { if dest == nil { return nil, errors.New("destination identity required") } a := &Announce{ identity: dest, appData: appData, hops: 0, timestamp: time.Now().Unix(), pathResponse: pathResponse, retries: 0, handlers: make([]AnnounceHandler, 0), } // Generate truncated hash hash := sha256.New() hash.Write(dest.GetPublicKey()) a.destinationHash = hash.Sum(nil)[:identity.TRUNCATED_HASHLENGTH/8] // Sign announce data signData := append(a.destinationHash, a.appData...) if dest.GetRatchetID(nil) != nil { a.ratchetID = dest.GetRatchetID(nil) signData = append(signData, a.ratchetID...) } a.signature = dest.Sign(signData) return a, nil } func (a *Announce) Propagate(interfaces []common.NetworkInterface) error { packet := a.CreatePacket() // Enhanced logging log.Printf("Creating announce packet:") log.Printf(" Destination Hash: %x", a.destinationHash) log.Printf(" Identity Public Key: %x", a.identity.GetPublicKey()) log.Printf(" App Data: %s", string(a.appData)) log.Printf(" Signature: %x", a.signature) log.Printf(" Total Packet Size: %d bytes", len(packet)) log.Printf(" Raw Packet: %x", packet) // Propagate to interfaces for _, iface := range interfaces { log.Printf("Propagating on interface %s:", iface.GetName()) log.Printf(" Interface Type: %d", iface.GetType()) log.Printf(" MTU: %d bytes", iface.GetMTU()) if err := iface.Send(packet, ""); err != nil { log.Printf(" Failed to propagate: %v", err) } else { log.Printf(" Successfully propagated") } } return nil } func (a *Announce) RegisterHandler(handler AnnounceHandler) { a.mutex.Lock() defer a.mutex.Unlock() a.handlers = append(a.handlers, handler) } func (a *Announce) DeregisterHandler(handler AnnounceHandler) { a.mutex.Lock() defer a.mutex.Unlock() for i, h := range a.handlers { if h == handler { a.handlers = append(a.handlers[:i], a.handlers[i+1:]...) break } } } func (a *Announce) HandleAnnounce(data []byte) error { a.mutex.Lock() defer a.mutex.Unlock() if len(data) < identity.TRUNCATED_HASHLENGTH/8+identity.KEYSIZE/8+1 { return errors.New("invalid announce data length") } destHash := data[:identity.TRUNCATED_HASHLENGTH/8] publicKey := data[identity.TRUNCATED_HASHLENGTH/8 : identity.TRUNCATED_HASHLENGTH/8+identity.KEYSIZE/8] hopCount := data[identity.TRUNCATED_HASHLENGTH/8+identity.KEYSIZE/8] if hopCount > MAX_HOPS { return errors.New("announce exceeded maximum hop count") } // Extract app data and signature dataStart := identity.TRUNCATED_HASHLENGTH/8 + identity.KEYSIZE/8 + 1 appData := data[dataStart : len(data)-ed25519.SignatureSize] signature := data[len(data)-ed25519.SignatureSize:] // Create announced identity announcedIdentity := identity.FromPublicKey(publicKey) if announcedIdentity == nil { return errors.New("invalid identity public key") } // Verify signature including ratchet if present signData := append(destHash, appData...) if len(appData) > 32 { // Check for ratchet ratchetID := appData[len(appData)-32:] signData = append(signData, ratchetID...) } if !announcedIdentity.Verify(signData, signature) { return errors.New("invalid announce signature") } // Process with handlers for _, handler := range a.handlers { if handler.ReceivePathResponses() || !a.pathResponse { if err := handler.ReceivedAnnounce(destHash, announcedIdentity, appData); err != nil { return err } } } return nil } func (a *Announce) RequestPath(destHash []byte, onInterface common.NetworkInterface) error { a.mutex.Lock() defer a.mutex.Unlock() // Create path request packet packet := make([]byte, 0) packet = append(packet, destHash...) packet = append(packet, byte(0)) // Initial hop count // Send path request if err := onInterface.Send(packet, ""); err != nil { return err } return nil } // CreateHeader creates a Reticulum packet header according to spec func CreateHeader(ifacFlag byte, headerType byte, contextFlag byte, propType byte, destType byte, packetType byte, hops byte) []byte { header := make([]byte, 2) // First byte: [IFAC Flag], [Header Type], [Context Flag], [Propagation Type], [Destination Type] and [Packet Type] header[0] = ifacFlag | (headerType << 6) | (contextFlag << 5) | (propType << 4) | (destType << 2) | packetType // Second byte: Number of hops header[1] = hops return header } func (a *Announce) CreatePacket() []byte { packet := make([]byte, 0) // Create header for announce packet header := CreateHeader( IFAC_NONE, // No interface authentication HEADER_TYPE_1, // One address field 0x00, // Context flag unset PROP_TYPE_BROADCAST, // Broadcast propagation DEST_TYPE_SINGLE, // Single destination PACKET_TYPE_ANNOUNCE, // Announce packet type byte(a.hops), // Current hop count ) packet = append(packet, header...) // Add destination hash (16 bytes) packet = append(packet, a.destinationHash...) // Add context byte packet = append(packet, ANNOUNCE_IDENTITY) // Add public key packet = append(packet, a.identity.GetPublicKey()...) // Add app data with length prefix if a.appData != nil { lenBytes := make([]byte, 2) binary.BigEndian.PutUint16(lenBytes, uint16(len(a.appData))) packet = append(packet, lenBytes...) packet = append(packet, a.appData...) } // Add signature packet = append(packet, a.signature...) return packet }