refactor(internal/komari/ws): streamline status request logic and enhance read loop handling

refactor(internal/node/tracker): improve initial refresh gating and snapshot handling
This commit is contained in:
2026-08-07 18:33:34 +08:00
parent 58b600baf6
commit fcb0751267
2 changed files with 76 additions and 51 deletions
+32 -36
View File
@@ -101,12 +101,6 @@ func (w *WSClient) Connect() error {
w.reconnectCount.Store(0)
w.running.Store(true)
// Request the initial node status snapshot.
if err := w.requestStatus(conn); err != nil {
postLog.Error("Failed to send initial node status request: " + err.Error())
return err
}
postLog.Info("Connected to Komari WebSocket")
go w.readLoop()
@@ -180,9 +174,15 @@ func (w *WSClient) requestStatus(conn *websocket.Conn) error {
return conn.WriteMessage(websocket.TextMessage, payload)
}
// readLoop reads JSON-RPC responses and feeds the node tracker.
// Komari never pushes unsolicited messages on /api/rpc2, so the loop re-requests
// a fresh snapshot whenever the connection stays quiet for a refresh interval.
// readLoop repeatedly pulls a fresh status snapshot and feeds the node tracker.
// Komari never pushes unsolicited messages on /api/rpc2, so the loop issues one
// request per refresh interval and reads exactly one response.
//
// It must never continue reading on the same connection after a read deadline
// timeout: gorilla/websocket marks a connection as corrupt once a read times
// out and returns the stored error on every subsequent read, which would make
// the loop spin until gorilla panics. A timed-out read therefore triggers a
// reconnect instead.
func (w *WSClient) readLoop() {
defer func() {
if r := recover(); r != nil {
@@ -193,7 +193,7 @@ func (w *WSClient) readLoop() {
const (
refreshInterval = 5 * time.Second
readTimeout = refreshInterval + 5*time.Second
readTimeout = refreshInterval + 10*time.Second
)
for {
@@ -211,6 +211,13 @@ func (w *WSClient) readLoop() {
return
}
// Pull a fresh snapshot, then wait for its single response.
if err := w.requestStatus(conn); err != nil {
postLog.Warning("Failed to request node status refresh: " + err.Error())
w.tryReconnect()
return
}
if err := conn.SetReadDeadline(time.Now().Add(readTimeout)); err != nil {
postLog.Warning("Komari WebSocket set read deadline error: " + err.Error())
w.tryReconnect()
@@ -220,13 +227,10 @@ func (w *WSClient) readLoop() {
_, data, err := conn.ReadMessage()
if err != nil {
if netErr, ok := err.(net.Error); ok && netErr.Timeout() {
// No push within the window — pull a fresh snapshot.
if rerr := w.requestStatus(conn); rerr != nil {
postLog.Warning("Failed to request node status refresh: " + rerr.Error())
}
continue
postLog.Warning("Komari WebSocket read timed out waiting for node status; reconnecting")
} else {
postLog.Warning("Komari WebSocket read error: " + err.Error())
}
postLog.Warning("Komari WebSocket read error: " + err.Error())
w.tryReconnect()
return
}
@@ -234,19 +238,20 @@ func (w *WSClient) readLoop() {
var rpcResp jsonRpcResponse
if err := json.Unmarshal(data, &rpcResp); err != nil {
postLog.Warning("Failed to parse Komari WebSocket message: " + err.Error())
continue
}
if rpcResp.Error != nil {
} else if rpcResp.Error != nil {
postLog.Warning("Komari WebSocket RPC error: " + rpcResp.Error.Message)
continue
}
if len(rpcResp.Result) == 0 {
continue
} else if len(rpcResp.Result) > 0 {
online, reports := parseLatestStatus(rpcResp.Result)
if tracker := node.GetTracker(); tracker != nil {
tracker.UpdateStatus(online, reports)
}
}
online, reports := parseLatestStatus(rpcResp.Result)
if tracker := node.GetTracker(); tracker != nil {
tracker.UpdateStatus(online, reports)
// Wait for the next refresh cycle before pulling again.
select {
case <-w.stopCh:
return
case <-time.After(refreshInterval):
}
}
}
@@ -313,10 +318,7 @@ func (w *WSClient) tryReconnect() {
}
// Exponential backoff.
delay := time.Duration(1<<(count-1)) * time.Second
if delay > 30*time.Second {
delay = 30 * time.Second
}
delay := min(time.Duration(1<<(count-1))*time.Second, 30*time.Second)
postLog.Info(fmt.Sprintf("Attempting Komari WebSocket reconnect %d/%d in %v...",
count, w.maxRetries, delay))
@@ -339,12 +341,6 @@ func (w *WSClient) tryReconnect() {
w.reconnectCount.Store(0)
// Request a fresh status snapshot after reconnect.
if err := w.requestStatus(conn); err != nil {
postLog.Error("Failed to send status request after reconnect: " + err.Error())
return
}
// Re-fetch node list after reconnect.
client := GetClient()
if client != nil {