738 lines
16 KiB
Go
738 lines
16 KiB
Go
package flexradio
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import (
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"bufio"
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"fmt"
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"log"
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"net"
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"strconv"
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"strings"
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"sync"
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"time"
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"unicode"
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)
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type Client struct {
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host string
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port int
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conn net.Conn
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reader *bufio.Reader
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connMu sync.Mutex
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writeMu sync.Mutex
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lastStatus *Status
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statusMu sync.RWMutex
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cmdSeq int
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cmdSeqMu sync.Mutex
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running bool
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stopChan chan struct{}
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reconnectInterval time.Duration
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reconnectAttempts int
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maxReconnectDelay time.Duration
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radioInfo map[string]string
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radioInfoMu sync.RWMutex
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lastInfoCheck time.Time
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infoCheckTimer *time.Timer
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activeSlices []int
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activeSlicesMu sync.RWMutex
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sliceListTimer *time.Timer
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onFrequencyChange func(freqMHz float64)
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checkTransmitAllowed func() bool
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}
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func New(host string, port int) *Client {
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return &Client{
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host: host,
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port: port,
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stopChan: make(chan struct{}),
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reconnectInterval: 5 * time.Second,
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maxReconnectDelay: 60 * time.Second,
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radioInfo: make(map[string]string),
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activeSlices: []int{},
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lastStatus: &Status{
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Connected: false,
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RadioOn: false,
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},
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}
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}
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// SetReconnectInterval sets the reconnection interval
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func (c *Client) SetReconnectInterval(interval time.Duration) {
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c.reconnectInterval = interval
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}
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// SetMaxReconnectDelay sets the maximum delay for exponential backoff
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func (c *Client) SetMaxReconnectDelay(delay time.Duration) {
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c.maxReconnectDelay = delay
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}
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// SetFrequencyChangeCallback sets the callback function called when frequency changes
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func (c *Client) SetFrequencyChangeCallback(callback func(freqMHz float64)) {
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c.onFrequencyChange = callback
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}
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// SetTransmitCheckCallback sets the callback to check if transmit is allowed
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func (c *Client) SetTransmitCheckCallback(callback func() bool) {
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c.checkTransmitAllowed = callback
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}
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func (c *Client) Connect() error {
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c.connMu.Lock()
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defer c.connMu.Unlock()
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if c.conn != nil {
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return nil
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}
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addr := fmt.Sprintf("%s:%d", c.host, c.port)
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log.Printf("FlexRadio: Connecting to %s...", addr)
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conn, err := net.DialTimeout("tcp", addr, 5*time.Second)
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if err != nil {
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return fmt.Errorf("failed to connect: %w", err)
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}
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c.conn = conn
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c.reader = bufio.NewReader(conn)
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c.reconnectAttempts = 0
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log.Println("FlexRadio: TCP connection established")
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return nil
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}
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func (c *Client) Start() error {
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if c.running {
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return nil
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}
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// Try initial connection
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if err := c.Connect(); err != nil {
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log.Printf("FlexRadio: Initial connection failed: %v", err)
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}
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// Update connected status
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c.statusMu.Lock()
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if c.lastStatus != nil {
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c.lastStatus.Connected = (c.conn != nil)
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c.lastStatus.RadioOn = false
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}
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c.statusMu.Unlock()
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c.running = true
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// Start message listener
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go c.messageLoop()
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// Start reconnection monitor
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go c.reconnectionMonitor()
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// Start radio status checker
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go c.radioStatusChecker()
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// Start slice list checker
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go c.sliceListChecker()
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// Try to get initial radio info and subscribe to slices
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if c.conn != nil {
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go func() {
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time.Sleep(500 * time.Millisecond)
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c.SendInfo()
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time.Sleep(500 * time.Millisecond)
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c.SendSliceList()
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time.Sleep(500 * time.Millisecond)
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c.SubscribeToSlices()
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}()
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}
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return nil
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}
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func (c *Client) Stop() {
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if !c.running {
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return
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}
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c.running = false
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close(c.stopChan)
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// Stop timers
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if c.infoCheckTimer != nil {
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c.infoCheckTimer.Stop()
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}
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if c.sliceListTimer != nil {
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c.sliceListTimer.Stop()
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}
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c.connMu.Lock()
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if c.conn != nil {
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c.conn.Close()
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c.conn = nil
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c.reader = nil
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}
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c.connMu.Unlock()
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// Update status
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c.statusMu.Lock()
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if c.lastStatus != nil {
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c.lastStatus.Connected = false
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c.lastStatus.RadioOn = false
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c.lastStatus.RadioInfo = "Disconnected"
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c.lastStatus.ActiveSlices = 0
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c.lastStatus.Frequency = 0
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c.lastStatus.Mode = ""
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c.lastStatus.Tx = false
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}
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c.statusMu.Unlock()
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}
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// Helper functions for common commands
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func (c *Client) SendInfo() error {
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return c.sendCommand("info")
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}
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func (c *Client) SendSliceList() error {
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return c.sendCommand("slice list")
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}
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func (c *Client) SubscribeToSlices() error {
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return c.sendCommand("sub slice all")
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}
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func (c *Client) sendCommand(cmd string) error {
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c.writeMu.Lock()
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defer c.writeMu.Unlock()
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c.connMu.Lock()
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conn := c.conn
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c.connMu.Unlock()
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if conn == nil {
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return fmt.Errorf("not connected")
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}
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seq := c.getNextSeq()
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fullCmd := fmt.Sprintf("C%d|%s\n", seq, cmd)
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log.Printf("FlexRadio TX: %s", strings.TrimSpace(fullCmd))
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_, err := conn.Write([]byte(fullCmd))
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if err != nil {
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// Mark connection as broken
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c.connMu.Lock()
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if c.conn != nil {
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c.conn.Close()
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c.conn = nil
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c.reader = nil
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}
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c.connMu.Unlock()
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// Update status
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c.statusMu.Lock()
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if c.lastStatus != nil {
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c.lastStatus.Connected = false
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c.lastStatus.RadioOn = false
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c.lastStatus.RadioInfo = "Connection lost"
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}
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c.statusMu.Unlock()
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return fmt.Errorf("failed to send command: %w", err)
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}
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return nil
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}
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func (c *Client) getNextSeq() int {
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c.cmdSeqMu.Lock()
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defer c.cmdSeqMu.Unlock()
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c.cmdSeq++
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return c.cmdSeq
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}
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func (c *Client) messageLoop() {
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log.Println("FlexRadio: Message loop started")
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for c.running {
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c.connMu.Lock()
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if c.conn == nil || c.reader == nil {
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c.connMu.Unlock()
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time.Sleep(1 * time.Second)
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continue
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}
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c.conn.SetReadDeadline(time.Now().Add(2 * time.Second))
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line, err := c.reader.ReadString('\n')
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c.connMu.Unlock()
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if err != nil {
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if netErr, ok := err.(net.Error); ok && netErr.Timeout() {
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continue
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}
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log.Printf("FlexRadio: Read error: %v", err)
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c.connMu.Lock()
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if c.conn != nil {
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c.conn.Close()
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c.conn = nil
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c.reader = nil
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}
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c.connMu.Unlock()
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c.statusMu.Lock()
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if c.lastStatus != nil {
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c.lastStatus.Connected = false
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c.lastStatus.RadioOn = false
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c.lastStatus.RadioInfo = "Connection lost"
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}
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c.statusMu.Unlock()
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continue
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}
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line = strings.TrimSpace(line)
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if line == "" {
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continue
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}
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c.handleMessage(line)
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}
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log.Println("FlexRadio: Message loop stopped")
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}
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// Message handling - SIMPLIFIED VERSION
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func (c *Client) handleMessage(msg string) {
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msg = strings.TrimSpace(msg)
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if msg == "" {
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return
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}
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// DEBUG: Log tous les messages reçus
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log.Printf("FlexRadio RAW: %s", msg)
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// Router selon le premier caractère
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switch msg[0] {
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case 'R': // Réponse à une commande
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c.handleCommandResponse(msg)
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case 'S': // Message de statut
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c.handleStatusMessage(msg)
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case 'V': // Version/Handle
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log.Printf("FlexRadio: Version/Handle: %s", msg)
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case 'M': // Message général
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log.Printf("FlexRadio: Message: %s", msg)
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default:
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log.Printf("FlexRadio: Unknown message type: %s", msg)
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}
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}
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func (c *Client) handleCommandResponse(msg string) {
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// Format: R<seq>|<status>|<data>
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parts := strings.SplitN(msg, "|", 3)
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if len(parts) < 3 {
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log.Printf("FlexRadio: Malformed response: %s", msg)
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return
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}
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seqStr := strings.TrimPrefix(parts[0], "R")
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status := parts[1]
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data := parts[2]
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seq, _ := strconv.Atoi(seqStr)
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if status != "0" {
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log.Printf("FlexRadio: Command error (seq=%d): %s", seq, msg)
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return
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}
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log.Printf("FlexRadio: Command success (seq=%d)", seq)
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// Identifier le type de réponse par son contenu
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switch {
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case strings.Contains(data, "model="):
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c.parseInfoResponse(data)
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case isSliceListResponse(data):
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c.parseSliceListResponse(data)
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default:
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log.Printf("FlexRadio: Generic response: %s", data)
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}
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}
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func isSliceListResponse(data string) bool {
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data = strings.TrimSpace(data)
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if data == "" {
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return true
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}
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for _, char := range data {
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if !unicode.IsDigit(char) && char != ' ' {
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return false
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}
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}
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return true
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}
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func (c *Client) handleStatusMessage(msg string) {
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parts := strings.SplitN(msg, "|", 2)
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if len(parts) < 2 {
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return
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}
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handle := parts[0][1:]
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data := parts[1]
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statusMap := make(map[string]string)
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pairs := strings.Fields(data)
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for _, pair := range pairs {
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if kv := strings.SplitN(pair, "=", 2); len(kv) == 2 {
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statusMap[kv[0]] = kv[1]
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}
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}
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switch {
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case strings.Contains(msg, "interlock"):
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c.handleInterlockStatus(handle, statusMap)
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case strings.Contains(msg, "slice"):
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c.handleSliceStatus(handle, statusMap)
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case strings.Contains(msg, "radio"):
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c.handleRadioStatus(handle, statusMap)
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default:
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log.Printf("FlexRadio: Unknown status (handle=%s): %s", handle, msg)
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}
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}
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func (c *Client) handleInterlockStatus(handle string, statusMap map[string]string) {
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c.statusMu.Lock()
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defer c.statusMu.Unlock()
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if state, ok := statusMap["state"]; ok {
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c.lastStatus.Tx = (state == "TRANSMITTING" || state == "TUNE")
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log.Printf("FlexRadio: Interlock state=%s, TX=%v", state, c.lastStatus.Tx)
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}
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}
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func (c *Client) handleSliceStatus(handle string, statusMap map[string]string) {
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c.statusMu.Lock()
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defer c.statusMu.Unlock()
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// Quand on reçoit un message de slice, on a au moins une slice active
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c.lastStatus.ActiveSlices = 1
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if rfFreq, ok := statusMap["RF_frequency"]; ok {
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if freq, err := strconv.ParseFloat(rfFreq, 64); err == nil && freq > 0 {
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c.lastStatus.Frequency = freq
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c.lastStatus.RadioInfo = fmt.Sprintf("Active on %.3f MHz", freq)
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if c.onFrequencyChange != nil {
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go c.onFrequencyChange(freq)
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}
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} else if freq == 0 {
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// Fréquence 0 dans le message de slice = slice inactive
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c.lastStatus.Frequency = 0
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c.lastStatus.RadioInfo = "Slice inactive"
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}
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}
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if mode, ok := statusMap["mode"]; ok {
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c.lastStatus.Mode = mode
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}
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if tx, ok := statusMap["tx"]; ok {
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c.lastStatus.Tx = (tx == "1")
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}
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}
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func (c *Client) handleRadioStatus(handle string, statusMap map[string]string) {
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if slices, ok := statusMap["slices"]; ok {
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if num, err := strconv.Atoi(slices); err == nil {
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c.statusMu.Lock()
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c.lastStatus.NumSlices = num
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c.statusMu.Unlock()
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}
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}
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}
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func (c *Client) parseInfoResponse(data string) {
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log.Printf("FlexRadio: Parsing info response: %s", data)
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pairs := []string{}
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current := ""
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inQuotes := false
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for _, char := range data {
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if char == '"' {
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inQuotes = !inQuotes
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}
|
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if char == ',' && !inQuotes {
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pairs = append(pairs, strings.TrimSpace(current))
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current = ""
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} else {
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current += string(char)
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}
|
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}
|
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if current != "" {
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pairs = append(pairs, strings.TrimSpace(current))
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}
|
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|
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c.radioInfoMu.Lock()
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c.radioInfo = make(map[string]string)
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|
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for _, pair := range pairs {
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kv := strings.SplitN(pair, "=", 2)
|
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if len(kv) == 2 {
|
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key := strings.TrimSpace(kv[0])
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value := strings.TrimSpace(kv[1])
|
|
|
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if len(value) >= 2 && value[0] == '"' && value[len(value)-1] == '"' {
|
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value = value[1 : len(value)-1]
|
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}
|
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|
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c.radioInfo[key] = value
|
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}
|
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}
|
|
|
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c.radioInfoMu.Unlock()
|
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|
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c.updateRadioStatus(true, "Radio is on")
|
|
|
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go func() {
|
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time.Sleep(300 * time.Millisecond)
|
|
c.SendSliceList()
|
|
}()
|
|
}
|
|
|
|
func (c *Client) parseSliceListResponse(data string) {
|
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slices := []int{}
|
|
|
|
if strings.TrimSpace(data) != "" {
|
|
parts := strings.Fields(data)
|
|
for _, part := range parts {
|
|
if sliceNum, err := strconv.Atoi(part); err == nil {
|
|
slices = append(slices, sliceNum)
|
|
}
|
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}
|
|
}
|
|
|
|
c.activeSlicesMu.Lock()
|
|
c.activeSlices = slices
|
|
c.activeSlicesMu.Unlock()
|
|
|
|
c.statusMu.Lock()
|
|
if c.lastStatus != nil {
|
|
c.lastStatus.ActiveSlices = len(slices)
|
|
|
|
// NE PAS effacer la fréquence ici !
|
|
// La fréquence est gérée par handleSliceStatus
|
|
|
|
// Seulement mettre à jour RadioInfo si vraiment pas de slices
|
|
if len(slices) == 0 && c.lastStatus.Frequency == 0 {
|
|
c.lastStatus.RadioInfo = "Radio is on without any active slice"
|
|
} else if len(slices) == 0 && c.lastStatus.Frequency > 0 {
|
|
// Cas spécial : fréquence mais pas de slice dans la liste
|
|
// Peut arriver temporairement, garder l'info actuelle
|
|
c.lastStatus.RadioInfo = fmt.Sprintf("Active on %.3f MHz", c.lastStatus.Frequency)
|
|
}
|
|
}
|
|
c.statusMu.Unlock()
|
|
|
|
log.Printf("FlexRadio: Active slices updated: %v (total: %d)", slices, len(slices))
|
|
}
|
|
|
|
func (c *Client) updateRadioStatus(isOn bool, info string) {
|
|
c.statusMu.Lock()
|
|
defer c.statusMu.Unlock()
|
|
|
|
if c.lastStatus != nil {
|
|
c.lastStatus.RadioOn = isOn
|
|
c.lastStatus.RadioInfo = info
|
|
|
|
c.radioInfoMu.RLock()
|
|
if callsign, ok := c.radioInfo["callsign"]; ok {
|
|
c.lastStatus.Callsign = callsign
|
|
}
|
|
if model, ok := c.radioInfo["model"]; ok {
|
|
c.lastStatus.Model = model
|
|
}
|
|
if softwareVer, ok := c.radioInfo["software_ver"]; ok {
|
|
c.lastStatus.SoftwareVer = softwareVer
|
|
}
|
|
if numSlicesStr, ok := c.radioInfo["num_slice"]; ok {
|
|
if numSlices, err := strconv.Atoi(numSlicesStr); err == nil {
|
|
c.lastStatus.NumSlices = numSlices
|
|
}
|
|
}
|
|
c.radioInfoMu.RUnlock()
|
|
|
|
if isOn && c.lastStatus.Frequency == 0 && c.lastStatus.ActiveSlices == 0 {
|
|
c.lastStatus.RadioInfo = "Radio is on without any active slice"
|
|
}
|
|
}
|
|
}
|
|
|
|
func (c *Client) reconnectionMonitor() {
|
|
log.Println("FlexRadio: Reconnection monitor started")
|
|
|
|
for c.running {
|
|
c.connMu.Lock()
|
|
connected := (c.conn != nil)
|
|
c.connMu.Unlock()
|
|
|
|
if !connected {
|
|
c.reconnectAttempts++
|
|
|
|
delay := c.calculateReconnectDelay()
|
|
|
|
log.Printf("FlexRadio: Attempting to reconnect in %v (attempt %d)...", delay, c.reconnectAttempts)
|
|
|
|
select {
|
|
case <-time.After(delay):
|
|
if err := c.reconnect(); err != nil {
|
|
log.Printf("FlexRadio: Reconnection attempt %d failed: %v", c.reconnectAttempts, err)
|
|
} else {
|
|
log.Printf("FlexRadio: Reconnected successfully on attempt %d", c.reconnectAttempts)
|
|
c.reconnectAttempts = 0
|
|
|
|
go func() {
|
|
time.Sleep(500 * time.Millisecond)
|
|
c.SendInfo()
|
|
}()
|
|
}
|
|
case <-c.stopChan:
|
|
return
|
|
}
|
|
} else {
|
|
select {
|
|
case <-time.After(10 * time.Second):
|
|
case <-c.stopChan:
|
|
return
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
func (c *Client) calculateReconnectDelay() time.Duration {
|
|
delay := c.reconnectInterval
|
|
|
|
if c.reconnectAttempts > 1 {
|
|
multiplier := 1 << (c.reconnectAttempts - 1)
|
|
delay = c.reconnectInterval * time.Duration(multiplier)
|
|
|
|
if delay > c.maxReconnectDelay {
|
|
delay = c.maxReconnectDelay
|
|
}
|
|
}
|
|
|
|
return delay
|
|
}
|
|
|
|
func (c *Client) reconnect() error {
|
|
c.connMu.Lock()
|
|
defer c.connMu.Unlock()
|
|
|
|
// Close existing connection if any
|
|
if c.conn != nil {
|
|
c.conn.Close()
|
|
c.conn = nil
|
|
c.reader = nil
|
|
}
|
|
|
|
addr := fmt.Sprintf("%s:%d", c.host, c.port)
|
|
log.Printf("FlexRadio: Reconnecting to %s...", addr)
|
|
|
|
conn, err := net.DialTimeout("tcp", addr, 5*time.Second)
|
|
if err != nil {
|
|
c.statusMu.Lock()
|
|
if c.lastStatus != nil {
|
|
c.lastStatus.Connected = false
|
|
c.lastStatus.RadioOn = false
|
|
c.lastStatus.RadioInfo = "Disconnected"
|
|
}
|
|
c.statusMu.Unlock()
|
|
return fmt.Errorf("reconnect failed: %w", err)
|
|
}
|
|
|
|
c.conn = conn
|
|
c.reader = bufio.NewReader(conn)
|
|
|
|
c.statusMu.Lock()
|
|
if c.lastStatus != nil {
|
|
c.lastStatus.Connected = true
|
|
c.lastStatus.RadioInfo = "TCP connected, checking radio..."
|
|
}
|
|
c.statusMu.Unlock()
|
|
|
|
log.Println("FlexRadio: TCP connection reestablished")
|
|
return nil
|
|
}
|
|
|
|
func (c *Client) radioStatusChecker() {
|
|
c.infoCheckTimer = time.NewTimer(10 * time.Second)
|
|
|
|
for c.running {
|
|
select {
|
|
case <-c.infoCheckTimer.C:
|
|
c.SendInfo()
|
|
c.infoCheckTimer.Reset(10 * time.Second)
|
|
case <-c.stopChan:
|
|
return
|
|
}
|
|
}
|
|
}
|
|
|
|
func (c *Client) sliceListChecker() {
|
|
c.sliceListTimer = time.NewTimer(10 * time.Second)
|
|
|
|
for c.running {
|
|
select {
|
|
case <-c.sliceListTimer.C:
|
|
if c.IsRadioOn() {
|
|
c.SendSliceList()
|
|
}
|
|
c.sliceListTimer.Reset(10 * time.Second)
|
|
case <-c.stopChan:
|
|
return
|
|
}
|
|
}
|
|
}
|
|
|
|
func (c *Client) GetStatus() (*Status, error) {
|
|
c.statusMu.RLock()
|
|
defer c.statusMu.RUnlock()
|
|
|
|
if c.lastStatus == nil {
|
|
return &Status{
|
|
Connected: false,
|
|
RadioOn: false,
|
|
RadioInfo: "Not initialized",
|
|
}, nil
|
|
}
|
|
|
|
status := *c.lastStatus
|
|
return &status, nil
|
|
}
|
|
|
|
// IsRadioOn returns true if radio is powered on and responding
|
|
func (c *Client) IsRadioOn() bool {
|
|
c.statusMu.RLock()
|
|
defer c.statusMu.RUnlock()
|
|
|
|
if c.lastStatus == nil {
|
|
return false
|
|
}
|
|
|
|
return c.lastStatus.RadioOn
|
|
}
|