Files
MeBox/internal/service/session_tracker.go
T

314 lines
8.6 KiB
Go

package service
import (
"context"
"sort"
"strings"
"sync"
"time"
"go.uber.org/zap"
"github.com/ShukeBta/MediaStationGo/internal/model"
)
const (
realtimeSessionTTL = 30 * time.Minute
realtimeSessionOnlineTTL = 5 * time.Minute
)
func RealtimeDeletionGuardWindow() time.Duration {
return realtimeSessionTTL
}
// RealtimeSession is an in-memory Emby-compatible session view. It mirrors the
// information reported by Emby clients through AuthenticateByName and
// /Sessions/Playing/* without requiring Playback Reporting persistence.
type RealtimeSession struct {
ID string `json:"id"`
UserID string `json:"user_id"`
UserName string `json:"user_name,omitempty"`
DeviceID string `json:"device_id"`
DeviceName string `json:"device_name,omitempty"`
Client string `json:"client,omitempty"`
RemoteEndPoint string `json:"remote_end_point,omitempty"`
LastActivityAt time.Time `json:"last_activity_at"`
ItemID string `json:"item_id,omitempty"`
PositionTicks int64 `json:"position_ticks,omitempty"`
RuntimeTicks int64 `json:"runtime_ticks,omitempty"`
IsPlaying bool `json:"is_playing"`
IsPaused bool `json:"is_paused"`
LastPlaybackAt *time.Time `json:"last_playback_at,omitempty"`
}
type realtimeSessionInput struct {
UserID string
UserName string
DeviceID string
DeviceName string
Client string
RemoteEndPoint string
ItemID string
PositionTicks int64
RuntimeTicks int64
IsPlaying bool
IsPaused bool
}
type userRealtimeActivity struct {
LastActivityAt *time.Time
ActiveDeviceCount int
Online bool
}
// SessionTrackerService keeps recent client state in memory. It is intentionally
// not durable: process restart clears transient online status, while normal
// login/playback requests repopulate it immediately.
type SessionTrackerService struct {
log *zap.Logger
mu sync.RWMutex
sessions map[string]RealtimeSession
now func() time.Time
}
func NewSessionTrackerService(log *zap.Logger) *SessionTrackerService {
return &SessionTrackerService{
log: log,
sessions: make(map[string]RealtimeSession),
now: time.Now,
}
}
func (s *SessionTrackerService) RecordLogin(ctx context.Context, userID, userName, deviceID, deviceName, client, remoteEndPoint string) {
if s == nil {
return
}
s.upsert(ctx, realtimeSessionInput{
UserID: userID,
UserName: userName,
DeviceID: deviceID,
DeviceName: deviceName,
Client: client,
RemoteEndPoint: remoteEndPoint,
})
}
func (s *SessionTrackerService) RecordPlayback(ctx context.Context, userID, userName, deviceID, deviceName, client, remoteEndPoint, itemID string, positionTicks, runtimeTicks int64, stopped bool) {
if s == nil {
return
}
s.upsert(ctx, realtimeSessionInput{
UserID: userID,
UserName: userName,
DeviceID: deviceID,
DeviceName: deviceName,
Client: client,
RemoteEndPoint: remoteEndPoint,
ItemID: itemID,
PositionTicks: positionTicks,
RuntimeTicks: runtimeTicks,
IsPlaying: !stopped,
})
}
func (s *SessionTrackerService) Logout(ctx context.Context, userID, deviceID, remoteEndPoint string) {
if s == nil {
return
}
userID = strings.TrimSpace(userID)
if userID == "" {
return
}
deviceID = strings.TrimSpace(deviceID)
remoteEndPoint = strings.TrimSpace(remoteEndPoint)
s.mu.Lock()
defer s.mu.Unlock()
for key, sess := range s.sessions {
if sess.UserID != userID {
continue
}
if deviceID != "" && sess.DeviceID != deviceID {
continue
}
if deviceID == "" && remoteEndPoint != "" && sess.RemoteEndPoint != remoteEndPoint {
continue
}
delete(s.sessions, key)
}
}
func (s *SessionTrackerService) List(ctx context.Context) []RealtimeSession {
if s == nil {
return nil
}
now := s.now()
s.mu.Lock()
defer s.mu.Unlock()
s.pruneLocked(now)
out := make([]RealtimeSession, 0, len(s.sessions))
for _, sess := range s.sessions {
out = append(out, sess)
}
sort.SliceStable(out, func(i, j int) bool {
return out[i].LastActivityAt.After(out[j].LastActivityAt)
})
return out
}
func (s *SessionTrackerService) ListByUser(ctx context.Context, userID string) []RealtimeSession {
userID = strings.TrimSpace(userID)
if userID == "" {
return nil
}
all := s.List(ctx)
out := make([]RealtimeSession, 0, len(all))
for _, sess := range all {
if sess.UserID == userID {
out = append(out, sess)
}
}
return out
}
func (s *SessionTrackerService) ApplyToUsers(ctx context.Context, users []model.User) {
if s == nil || len(users) == 0 {
return
}
activity := s.activityByUser(ctx)
for i := range users {
a, ok := activity[users[i].ID]
if !ok {
continue
}
if a.LastActivityAt != nil && (users[i].LastLoginAt == nil || a.LastActivityAt.After(*users[i].LastLoginAt)) {
t := *a.LastActivityAt
users[i].LastLoginAt = &t
}
users[i].RealtimeOnline = a.Online
users[i].RealtimeDeviceCount = a.ActiveDeviceCount
}
}
func (s *SessionTrackerService) UserRecentlyActive(ctx context.Context, userID string, within time.Duration) bool {
if s == nil || within <= 0 {
return false
}
activity := s.activityByUser(ctx)[strings.TrimSpace(userID)]
return activity.LastActivityAt != nil && activity.LastActivityAt.After(s.now().Add(-within))
}
func (s *SessionTrackerService) activityByUser(ctx context.Context) map[string]userRealtimeActivity {
sessions := s.List(ctx)
now := s.now()
out := make(map[string]userRealtimeActivity)
seenDevices := make(map[string]map[string]struct{})
for _, sess := range sessions {
if strings.TrimSpace(sess.UserID) == "" {
continue
}
a := out[sess.UserID]
if a.LastActivityAt == nil || sess.LastActivityAt.After(*a.LastActivityAt) {
t := sess.LastActivityAt
a.LastActivityAt = &t
}
if sess.LastActivityAt.After(now.Add(-realtimeSessionOnlineTTL)) {
a.Online = true
}
if seenDevices[sess.UserID] == nil {
seenDevices[sess.UserID] = map[string]struct{}{}
}
seenDevices[sess.UserID][sessionDeviceKey(sess)] = struct{}{}
a.ActiveDeviceCount = len(seenDevices[sess.UserID])
out[sess.UserID] = a
}
return out
}
func (s *SessionTrackerService) upsert(ctx context.Context, in realtimeSessionInput) {
userID := strings.TrimSpace(in.UserID)
if userID == "" {
return
}
now := s.now()
in.DeviceID = strings.TrimSpace(in.DeviceID)
in.DeviceName = strings.TrimSpace(in.DeviceName)
in.Client = strings.TrimSpace(in.Client)
in.RemoteEndPoint = strings.TrimSpace(in.RemoteEndPoint)
if in.DeviceID == "" {
in.DeviceID = fallbackSessionDeviceID(in.DeviceName, in.Client, in.RemoteEndPoint)
}
key := userID + "\x00" + in.DeviceID
s.mu.Lock()
defer s.mu.Unlock()
s.pruneLocked(now)
existing := s.sessions[key]
if strings.TrimSpace(in.UserName) == "" {
in.UserName = existing.UserName
}
if in.DeviceName == "" {
in.DeviceName = existing.DeviceName
}
if in.Client == "" {
in.Client = existing.Client
}
if in.RemoteEndPoint == "" {
in.RemoteEndPoint = existing.RemoteEndPoint
}
lastPlaybackAt := existing.LastPlaybackAt
if in.ItemID != "" || in.IsPlaying {
t := now
lastPlaybackAt = &t
}
s.sessions[key] = RealtimeSession{
ID: key,
UserID: userID,
UserName: strings.TrimSpace(in.UserName),
DeviceID: in.DeviceID,
DeviceName: in.DeviceName,
Client: in.Client,
RemoteEndPoint: in.RemoteEndPoint,
LastActivityAt: now,
ItemID: firstNonEmptyString(in.ItemID, existing.ItemID),
PositionTicks: in.PositionTicks,
RuntimeTicks: in.RuntimeTicks,
IsPlaying: in.IsPlaying,
IsPaused: in.IsPaused,
LastPlaybackAt: lastPlaybackAt,
}
}
func (s *SessionTrackerService) pruneLocked(now time.Time) {
expiresBefore := now.Add(-realtimeSessionTTL)
for key, sess := range s.sessions {
if sess.LastActivityAt.Before(expiresBefore) {
delete(s.sessions, key)
}
}
}
func fallbackSessionDeviceID(deviceName, client, remoteEndPoint string) string {
parts := []string{strings.TrimSpace(deviceName), strings.TrimSpace(client), strings.TrimSpace(remoteEndPoint)}
joined := strings.Trim(strings.Join(parts, "|"), "|")
if joined == "" {
joined = "unknown"
}
return "rt-" + fingerprint(client, joined)
}
func sessionDeviceKey(sess RealtimeSession) string {
if strings.TrimSpace(sess.DeviceID) != "" {
return strings.TrimSpace(sess.DeviceID)
}
return fallbackSessionDeviceID(sess.DeviceName, sess.Client, sess.RemoteEndPoint)
}
func firstNonEmptyString(values ...string) string {
for _, value := range values {
if strings.TrimSpace(value) != "" {
return strings.TrimSpace(value)
}
}
return ""
}