Files
beszel/agent/wifi/wifi_linux.go
T
henrygd a042e19549 wifi(linux): query associated station directly
mdlayher/wifi only dumps stations, which some full-MAC drivers (e.g.
out-of-tree Realtek USB) answer with an empty list, leaving RSSI
unavailable. Request the associated BSSID's station directly, as
`iw link` does, and parse it with native.ParseStationInfo.
2026-09-25 19:59:18 -04:00

135 lines
3.5 KiB
Go

//go:build linux
package wifi
import (
"context"
"errors"
"net"
"time"
"github.com/henrygd/beszel/internal/entities/system"
"github.com/mdlayher/genetlink"
"github.com/mdlayher/netlink"
native "github.com/mdlayher/wifi"
"golang.org/x/sys/unix"
)
type linuxClient interface {
Interfaces() ([]*native.Interface, error)
BSS(*native.Interface) (*native.BSS, error)
Station(*native.Interface, net.HardwareAddr) (*native.StationInfo, error)
SetDeadline(time.Time) error
Close() error
}
// nl80211Client adds a targeted GET_STATION request, as used by `iw link`.
// mdlayher/wifi only dumps stations, which some full-MAC drivers (e.g.
// out-of-tree Realtek USB) answer with an empty list.
type nl80211Client struct {
*native.Client
conn *genetlink.Conn
family genetlink.Family
}
func newNL80211Client() (*nl80211Client, error) {
client, err := native.New()
if err != nil {
return nil, err
}
conn, err := genetlink.Dial(nil)
if err != nil {
client.Close()
return nil, err
}
family, err := conn.GetFamily(unix.NL80211_GENL_NAME)
if err != nil {
conn.Close()
client.Close()
return nil, err
}
return &nl80211Client{Client: client, conn: conn, family: family}, nil
}
func (c *nl80211Client) Station(ifi *native.Interface, mac net.HardwareAddr) (*native.StationInfo, error) {
ae := netlink.NewAttributeEncoder()
ae.Uint32(unix.NL80211_ATTR_IFINDEX, uint32(ifi.Index))
ae.Bytes(unix.NL80211_ATTR_MAC, mac)
data, err := ae.Encode()
if err != nil {
return nil, err
}
msgs, err := c.conn.Execute(genetlink.Message{
Header: genetlink.Header{Command: unix.NL80211_CMD_GET_STATION, Version: c.family.Version},
Data: data,
}, c.family.ID, netlink.Request)
if err != nil {
return nil, err
}
if len(msgs) == 0 {
return nil, errors.New("no station info")
}
return native.ParseStationInfo(msgs[0].Data)
}
func (c *nl80211Client) SetDeadline(t time.Time) error {
return errors.Join(c.Client.SetDeadline(t), c.conn.SetDeadline(t))
}
func (c *nl80211Client) Close() error {
return errors.Join(c.conn.Close(), c.Client.Close())
}
func collect(ctx context.Context) map[string]system.WiFi {
client, err := newNL80211Client()
if err != nil {
return nil
}
defer client.Close()
return collectLinux(ctx, client)
}
func collectLinux(ctx context.Context, client linuxClient) map[string]system.WiFi {
result := make(map[string]system.WiFi)
if ctx.Err() != nil {
return result
}
if deadline, ok := ctx.Deadline(); ok {
if client.SetDeadline(deadline) != nil {
return result
}
}
interfaces, err := client.Interfaces()
if err != nil {
return result
}
for _, iface := range interfaces {
if ctx.Err() != nil {
break
}
if iface == nil || iface.Type != native.InterfaceTypeStation || iface.Name == "" {
continue
}
// GET_SCAN reads the kernel's BSS cache, without triggering a scan.
// Only the explicit associated status proves a current connection.
bss, err := client.BSS(iface)
if err != nil || bss == nil || bss.Status != native.BSSStatusAssociated {
continue
}
reading := system.WiFi{SSID: validSSID(bss.SSID)}
// Station statistics may require permissions unavailable in default
// containers. Keep association even when RSSI cannot be read. Do not
// substitute cached scan signal, which may be arbitrarily old.
if len(bss.BSSID) > 0 {
if station, err := client.Station(iface, bss.BSSID); err == nil && station != nil {
signal := float64(station.Signal)
if signal >= -150 && signal < 0 {
reading.Signal = &signal
}
}
}
result[iface.Name] = reading
}
return result
}