package model import ( "github.com/nezhahq/nezha/pkg/utils" "gorm.io/gorm" ) const ( ModeAlwaysTrigger = 0 ModeOnetimeTrigger = 1 ) type AlertRule struct { Common Name string `json:"name"` RulesRaw string `json:"-"` Enable *bool `json:"enable,omitempty"` TriggerMode uint8 `gorm:"default:0" json:"trigger_mode"` // 触发模式: 0-始终触发(默认) 1-单次触发 NotificationGroupID uint64 `json:"notification_group_id"` // 该报警规则所在的通知组 FailTriggerTasksRaw string `gorm:"default:'[]'" json:"-"` RecoverTriggerTasksRaw string `gorm:"default:'[]'" json:"-"` Rules []Rule `gorm:"-" json:"rules"` FailTriggerTasks []uint64 `gorm:"-" json:"fail_trigger_tasks"` // 失败时执行的触发任务id RecoverTriggerTasks []uint64 `gorm:"-" json:"recover_trigger_tasks"` // 恢复时执行的触发任务id } func (r *AlertRule) BeforeSave(tx *gorm.DB) error { if data, err := utils.Json.Marshal(r.Rules); err != nil { return err } else { r.RulesRaw = string(data) } if data, err := utils.Json.Marshal(r.FailTriggerTasks); err != nil { return err } else { r.FailTriggerTasksRaw = string(data) } if data, err := utils.Json.Marshal(r.RecoverTriggerTasks); err != nil { return err } else { r.RecoverTriggerTasksRaw = string(data) } return nil } func (r *AlertRule) AfterFind(tx *gorm.DB) error { var err error if err = utils.Json.Unmarshal([]byte(r.RulesRaw), &r.Rules); err != nil { return err } if err = utils.Json.Unmarshal([]byte(r.FailTriggerTasksRaw), &r.FailTriggerTasks); err != nil { return err } if err = utils.Json.Unmarshal([]byte(r.RecoverTriggerTasksRaw), &r.RecoverTriggerTasks); err != nil { return err } return nil } func (r *AlertRule) Enabled() bool { return r.Enable != nil && *r.Enable } // Snapshot 对传入的Server进行该报警规则下所有type的检查 返回每项检查结果 func (r *AlertRule) Snapshot(cycleTransferStats *CycleTransferStats, server *Server, db *gorm.DB) []bool { point := make([]bool, 0, len(r.Rules)) for _, rule := range r.Rules { point = append(point, rule.Snapshot(cycleTransferStats, server, db)) } return point } // Check 传入包含当前报警规则下所有type检查结果 返回报警持续时间与是否通过报警检查(通过则返回true) func (r *AlertRule) Check(points [][]bool) (maxDuration int, passed bool) { failCount := 0 // 检查未通过的个数 for i, rule := range r.Rules { if rule.IsTransferDurationRule() { // 循环区间流量报警 if maxDuration < 1 { maxDuration = 1 } for j := len(points[i]) - 1; j >= 0; j-- { if !points[i][j] { failCount++ break } } } else { // 常规报警 duration := int(rule.Duration) if duration > maxDuration { maxDuration = duration } if len(points) < duration { continue } total, fail := 0.0, 0.0 for j := len(points) - duration; j < len(points); j++ { total++ if !points[j][i] { fail++ } } // 当70%以上的采样点未通过规则判断时 才认为当前检查未通过 if fail/total > 0.7 { failCount++ break } } } // 仅当所有检查均未通过时 返回false return maxDuration, failCount != len(r.Rules) }