mirror of
https://github.com/cgrates/cgrates.git
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356 lines
9.8 KiB
Go
356 lines
9.8 KiB
Go
/*
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Real-time Online/Offline Charging System (OerS) for Telecom & ISP environments
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Copyright (C) ITsysCOM GmbH
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This program is free software: you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation, either version 3 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT MetaAny WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program. If not, see <http://www.gnu.org/licenses/>
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*/
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package engine
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import (
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"fmt"
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"sort"
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"time"
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"github.com/ericlagergren/decimal"
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"github.com/cgrates/cgrates/utils"
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"github.com/cgrates/cron"
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)
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// RateProfile represents the configuration of a Rate profile
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type RateProfile struct {
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Tenant string
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ID string
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FilterIDs []string
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ActivationInterval *utils.ActivationInterval
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Weight float64
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MinCost *utils.Decimal
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MaxCost *utils.Decimal
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MaxCostStrategy string
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Rates map[string]*Rate
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}
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func (rp *RateProfile) TenantID() string {
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return utils.ConcatenatedKey(rp.Tenant, rp.ID)
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}
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func (rp *RateProfile) Compile() (err error) {
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for _, rtP := range rp.Rates {
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rtP.uID = utils.ConcatenatedKey(rp.Tenant, rp.ID, rtP.ID)
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if err = rtP.Compile(); err != nil {
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return
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}
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}
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return
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}
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// Rate defines rate related information used within a RateProfile
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type Rate struct {
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ID string // RateID
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FilterIDs []string // RateFilterIDs
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ActivationTimes string // ActivationTimes is a cron formatted time interval
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Weight float64 // RateWeight will decide the winner per interval start
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Blocker bool // RateBlocker will make this rate recurrent, deactivating further intervals
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IntervalRates []*IntervalRate
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sched cron.Schedule // compiled version of activation times as cron.Schedule interface
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uID string
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}
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// UID returns system wide unique identifier
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func (rt *Rate) UID() string {
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return rt.uID
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}
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type IntervalRate struct {
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IntervalStart time.Duration // Starting point when the Rate kicks in
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FixedFee *utils.Decimal
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RecurrentFee *utils.Decimal
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Unit *utils.Decimal // RateUnit
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Increment *utils.Decimal // RateIncrement
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}
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func (rt *Rate) Compile() (err error) {
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aTime := rt.ActivationTimes
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if aTime == utils.EmptyString {
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aTime = "* * * * *"
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}
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if rt.sched, err = cron.ParseStandard(aTime); err != nil {
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return
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}
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return
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}
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// RunTimes returns the set of activation and deactivation times for this rate on the interval between >=sTime and <eTime
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// aTimes is in the form of [][]
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func (rt *Rate) RunTimes(sTime, eTime time.Time, verbosity int) (aTimes [][]time.Time, err error) {
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sTime = sTime.Add(-time.Minute) // to make sure we can cover startTime
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for i := 0; i < verbosity; i++ {
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aTime := rt.sched.Next(sTime)
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if aTime.IsZero() || !aTime.Before(eTime) { // #TestMe
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return
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}
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iTime := rt.sched.NextInactive(aTime)
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aTimes = append(aTimes, []time.Time{aTime, iTime})
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if iTime.IsZero() || !eTime.After(iTime) { // #TestMe
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return
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}
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sTime = iTime
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}
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// protect from memory leak
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utils.Logger.Warning(
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fmt.Sprintf(
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"maximum runTime iterations reached for Rate: <%+v>, sTime: <%+v>, eTime: <%+v>",
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rt, sTime, eTime))
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return nil, utils.ErrMaxIterationsReached
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}
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// RateProfileWithOpts is used in replicatorV1 for dispatcher
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type RateProfileWithOpts struct {
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*RateProfile
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Opts map[string]interface{}
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}
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// RateSInterval is used by RateS to integrate Rate info for one charging interval
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type RateSInterval struct {
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UsageStart time.Duration
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Increments []*RateSIncrement
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CompressFactor int64
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cost *decimal.Big // unexported total interval cost
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}
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type RateSIncrement struct {
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UsageStart time.Duration
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Rate *Rate
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IntervalRateIndex int
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CompressFactor int64
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Usage time.Duration
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cost *decimal.Big // unexported total increment cost
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}
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// RateProfileCost is the cost returned by RateS at cost queries
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type RateProfileCost struct {
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ID string // RateProfileID
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Cost float64
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MinCost float64
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MaxCost float64
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MaxCostStrategy string
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RateSIntervals []*RateSInterval
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Altered []string
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}
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// CorrectCost should be called in final phase of cost calculation
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// in order to apply further correction like Min/MaxCost or rounding
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func (rPc *RateProfileCost) CorrectCost(rndDec *int, rndMtd string) {
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if rPc.MinCost != 0 && rPc.Cost < rPc.MinCost {
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rPc.Cost = rPc.MinCost
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rPc.Altered = append(rPc.Altered, utils.MinCost)
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}
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if rPc.MaxCost != 0 && rPc.Cost > rPc.MaxCost {
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rPc.Cost = rPc.MaxCost
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rPc.Altered = append(rPc.Altered, utils.MaxCost)
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}
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if rndDec != nil {
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rPc.Cost = utils.Round(rPc.Cost, *rndDec, rndMtd)
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rPc.Altered = append(rPc.Altered, utils.RoundingDecimals)
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}
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}
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// Sort will sort the IntervalRates from each Rate based on IntervalStart
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func (rpp *RateProfile) Sort() {
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for _, rate := range rpp.Rates {
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sort.Slice(rate.IntervalRates, func(i, j int) bool {
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return rate.IntervalRates[i].IntervalStart < rate.IntervalRates[j].IntervalStart
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})
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}
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}
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// CompressEquals compares two RateSIntervals for Compress function
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func (rIv *RateSInterval) CompressEquals(rIv2 *RateSInterval) (eq bool) {
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if len(rIv.Increments) != len(rIv2.Increments) {
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return
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}
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for i, rIcr := range rIv.Increments {
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if !rIcr.CompressEquals(rIv2.Increments[i]) {
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return
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}
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}
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return true
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}
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func (rIv *RateSInterval) Cost() *decimal.Big {
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if rIv.cost == nil {
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rIv.cost = new(decimal.Big)
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for _, incrm := range rIv.Increments {
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rIv.cost = utils.SumBig(rIv.cost, incrm.Cost())
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}
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}
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return rIv.cost
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}
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// CompressEquals compares two RateSIncrement for Compress function
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func (rIcr *RateSIncrement) CompressEquals(rIcr2 *RateSIncrement) (eq bool) {
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if rIcr.Rate.UID() != rIcr2.Rate.UID() {
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return
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}
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if rIcr.IntervalRateIndex != rIcr2.IntervalRateIndex {
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return
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}
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if rIcr.Usage != rIcr2.Usage {
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return
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}
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return true
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}
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// Cost computes the Cost on RateSIncrement
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func (rIcr *RateSIncrement) Cost() *decimal.Big {
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if rIcr.cost == nil {
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icrRt := rIcr.Rate.IntervalRates[rIcr.IntervalRateIndex]
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if rIcr.Usage == utils.InvalidDuration { // FixedFee
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rIcr.cost = icrRt.FixedFee.Big
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} else {
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rIcr.cost = icrRt.RecurrentFee.Big
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if icrRt.Unit != icrRt.Increment {
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rIcr.cost = utils.DivideBig(
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utils.MultiplyBig(rIcr.cost, icrRt.Increment.Big),
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icrRt.Unit.Big)
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}
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if rIcr.CompressFactor != 1 {
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rIcr.cost = utils.MultiplyBig(
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rIcr.cost,
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new(decimal.Big).SetUint64(uint64(rIcr.CompressFactor)))
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}
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}
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}
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return rIcr.cost
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}
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// CostForIntervals sums the costs for all intervals
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func CostForIntervals(rtIvls []*RateSInterval) (cost *decimal.Big) {
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cost = new(decimal.Big)
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for _, rtIvl := range rtIvls {
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cost = utils.SumBig(cost, rtIvl.Cost())
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}
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return
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}
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// CompressIntervals will compress intervals which equal
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func CompressIntervals(rtIvls []*RateSInterval) {
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}
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func (ext *APIRateProfile) AsRateProfile() (rp *RateProfile, err error) {
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rp = &RateProfile{
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Tenant: ext.Tenant,
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ID: ext.ID,
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FilterIDs: ext.FilterIDs,
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ActivationInterval: ext.ActivationInterval,
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Weight: ext.Weight,
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MaxCostStrategy: ext.MaxCostStrategy,
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}
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if ext.MinCost != nil {
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rp.MinCost = utils.NewDecimalFromFloat64(*ext.MinCost)
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}
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if ext.MaxCost != nil {
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rp.MaxCost = utils.NewDecimalFromFloat64(*ext.MaxCost)
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}
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if len(ext.Rates) != 0 {
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rp.Rates = make(map[string]*Rate)
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for key, extRate := range ext.Rates {
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if rp.Rates[key], err = extRate.AsRate(); err != nil {
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return
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}
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}
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}
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if err = rp.Compile(); err != nil {
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return
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}
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return
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}
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type APIRateProfile struct {
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Tenant string
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ID string
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FilterIDs []string
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ActivationInterval *utils.ActivationInterval
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Weight float64
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MinCost *float64
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MaxCost *float64
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MaxCostStrategy string
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Rates map[string]*APIRate
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}
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type APIRateProfileWithOpts struct {
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*APIRateProfile
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Opts map[string]interface{}
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}
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func (ext *APIRate) AsRate() (rate *Rate, err error) {
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rate = &Rate{
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ID: ext.ID,
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FilterIDs: ext.FilterIDs,
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ActivationTimes: ext.ActivationTimes,
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Weight: ext.Weight,
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Blocker: ext.Blocker,
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}
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if len(ext.IntervalRates) != 0 {
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rate.IntervalRates = make([]*IntervalRate, len(ext.IntervalRates))
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for i, iRate := range ext.IntervalRates {
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if rate.IntervalRates[i], err = iRate.AsIntervalRate(); err != nil {
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return
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}
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}
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}
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return
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}
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type APIRate struct {
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ID string // RateID
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FilterIDs []string // RateFilterIDs
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ActivationTimes string // ActivationTimes is a cron formatted time interval
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Weight float64 // RateWeight will decide the winner per interval start
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Blocker bool // RateBlocker will make this rate recurrent, deactivating further intervals
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IntervalRates []*APIIntervalRate
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}
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func (ext *APIIntervalRate) AsIntervalRate() (iRate *IntervalRate, err error) {
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iRate = new(IntervalRate)
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if iRate.IntervalStart, err = utils.ParseDurationWithNanosecs(ext.IntervalStart); err != nil {
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return
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}
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if ext.FixedFee != nil {
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iRate.FixedFee = utils.NewDecimalFromFloat64(*ext.FixedFee)
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}
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if ext.RecurrentFee != nil {
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iRate.RecurrentFee = utils.NewDecimalFromFloat64(*ext.RecurrentFee)
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}
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if ext.Unit != nil {
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iRate.Unit = utils.NewDecimalFromFloat64(*ext.Unit)
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}
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if ext.Increment != nil {
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iRate.Increment = utils.NewDecimalFromFloat64(*ext.Increment)
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}
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return
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}
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type APIIntervalRate struct {
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IntervalStart string
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FixedFee *float64
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RecurrentFee *float64
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Unit *float64 // RateUnit
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Increment *float64 // RateIncrement
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}
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