package model import ( "encoding/json" "errors" "fmt" "math/rand" "one-api/common" "sort" "strconv" "strings" "sync" "time" ) var ( TokenCacheSeconds = common.SyncFrequency UserId2GroupCacheSeconds = common.SyncFrequency UserId2QuotaCacheSeconds = common.SyncFrequency UserId2StatusCacheSeconds = common.SyncFrequency ) func CacheGetTokenByKey(key string) (*Token, error) { keyCol := "`key`" if common.UsingPostgreSQL { keyCol = `"key"` } var token Token if !common.RedisEnabled { err := DB.Where(keyCol+" = ?", key).First(&token).Error return &token, err } tokenObjectString, err := common.RedisGet(fmt.Sprintf("token:%s", key)) if err != nil { err := DB.Where(keyCol+" = ?", key).First(&token).Error if err != nil { return nil, err } jsonBytes, err := json.Marshal(token) if err != nil { return nil, err } err = common.RedisSet(fmt.Sprintf("token:%s", key), string(jsonBytes), time.Duration(TokenCacheSeconds)*time.Second) if err != nil { common.SysError("Redis set token error: " + err.Error()) } return &token, nil } err = json.Unmarshal([]byte(tokenObjectString), &token) return &token, err } func CacheGetUserGroup(id int) (group string, err error) { if !common.RedisEnabled { return GetUserGroup(id) } group, err = common.RedisGet(fmt.Sprintf("user_group:%d", id)) if err != nil { group, err = GetUserGroup(id) if err != nil { return "", err } err = common.RedisSet(fmt.Sprintf("user_group:%d", id), group, time.Duration(UserId2GroupCacheSeconds)*time.Second) if err != nil { common.SysError("Redis set user group error: " + err.Error()) } } return group, err } func CacheGetUserQuota(id int) (quota int, err error) { if !common.RedisEnabled { return GetUserQuota(id) } quotaString, err := common.RedisGet(fmt.Sprintf("user_quota:%d", id)) if err != nil { quota, err = GetUserQuota(id) if err != nil { return 0, err } err = common.RedisSet(fmt.Sprintf("user_quota:%d", id), fmt.Sprintf("%d", quota), time.Duration(UserId2QuotaCacheSeconds)*time.Second) if err != nil { common.SysError("Redis set user quota error: " + err.Error()) } return quota, err } quota, err = strconv.Atoi(quotaString) return quota, err } func CacheUpdateUserQuota(id int) error { if !common.RedisEnabled { return nil } quota, err := GetUserQuota(id) if err != nil { return err } err = common.RedisSet(fmt.Sprintf("user_quota:%d", id), fmt.Sprintf("%d", quota), time.Duration(UserId2QuotaCacheSeconds)*time.Second) return err } func CacheDecreaseUserQuota(id int, quota int) error { if !common.RedisEnabled { return nil } err := common.RedisDecrease(fmt.Sprintf("user_quota:%d", id), int64(quota)) return err } func CacheIsUserEnabled(userId int) (bool, error) { if !common.RedisEnabled { return IsUserEnabled(userId) } enabled, err := common.RedisGet(fmt.Sprintf("user_enabled:%d", userId)) if err == nil { return enabled == "1", nil } userEnabled, err := IsUserEnabled(userId) if err != nil { return false, err } enabled = "0" if userEnabled { enabled = "1" } err = common.RedisSet(fmt.Sprintf("user_enabled:%d", userId), enabled, time.Duration(UserId2StatusCacheSeconds)*time.Second) if err != nil { common.SysError("Redis set user enabled error: " + err.Error()) } return userEnabled, err } var group2model2channels map[string]map[string][]*Channel var channelSyncLock sync.RWMutex func InitChannelCache() { newChannelId2channel := make(map[int]*Channel) var channels []*Channel DB.Where("status = ?", common.ChannelStatusEnabled).Find(&channels) for _, channel := range channels { newChannelId2channel[channel.Id] = channel } var abilities []*Ability DB.Find(&abilities) groups := make(map[string]bool) for _, ability := range abilities { groups[ability.Group] = true } newGroup2model2channels := make(map[string]map[string][]*Channel) for group := range groups { newGroup2model2channels[group] = make(map[string][]*Channel) } for _, channel := range channels { groups := strings.Split(channel.Group, ",") for _, group := range groups { models := strings.Split(channel.Models, ",") for _, model := range models { if _, ok := newGroup2model2channels[group][model]; !ok { newGroup2model2channels[group][model] = make([]*Channel, 0) } newGroup2model2channels[group][model] = append(newGroup2model2channels[group][model], channel) } } } // sort by priority for group, model2channels := range newGroup2model2channels { for model, channels := range model2channels { sort.Slice(channels, func(i, j int) bool { return channels[i].GetPriority() > channels[j].GetPriority() }) newGroup2model2channels[group][model] = channels } } channelSyncLock.Lock() group2model2channels = newGroup2model2channels channelSyncLock.Unlock() common.SysLog("channels synced from database") } func SyncChannelCache(frequency int) { for { time.Sleep(time.Duration(frequency) * time.Second) common.SysLog("syncing channels from database") InitChannelCache() } } func CacheGetRandomSatisfiedChannel(group string, model string) (*Channel, error) { if !common.MemoryCacheEnabled { return GetRandomSatisfiedChannel(group, model) } channelSyncLock.RLock() defer channelSyncLock.RUnlock() channels := group2model2channels[group][model] if len(channels) == 0 { return nil, errors.New("channel not found") } endIdx := len(channels) // choose by priority firstChannel := channels[0] if firstChannel.GetPriority() > 0 { for i := range channels { if channels[i].GetPriority() != firstChannel.GetPriority() { endIdx = i break } } } idx := rand.Intn(endIdx) return channels[idx], nil }