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notional_volumes.go
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notional_volumes.go
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// Copyright (C) 2023 Gobalsky Labs Limited
//
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU Affero General Public License as
// published by the Free Software Foundation, either version 3 of the
// License, or (at your option) any later version.
//
// This program is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Affero General Public License for more details.
//
// You should have received a copy of the GNU Affero General Public License
// along with this program. If not, see <http://www.gnu.org/licenses/>.
package referral
import (
"code.vegaprotocol.io/vega/core/types"
"code.vegaprotocol.io/vega/libs/num"
)
type runningVolumes struct {
// maxPartyNotionalVolumeByQuantumPerEpoch limits the volume in quantum units
// which is eligible each epoch for referral program mechanisms.
maxPartyNotionalVolumeByQuantumPerEpoch *num.Uint
// runningVolumesBySet tracks the running notional volume by referralSets.
runningVolumesBySet map[types.ReferralSetID][]*notionalVolume
}
type notionalVolume struct {
epoch uint64
value *num.Uint
}
func (vs *runningVolumes) Add(epoch uint64, setID types.ReferralSetID, volume *num.Uint) {
volumeToAdd := volume
if volume.GT(vs.maxPartyNotionalVolumeByQuantumPerEpoch) {
volumeToAdd = vs.maxPartyNotionalVolumeByQuantumPerEpoch
}
runningVolumeForSet, isTracked := vs.runningVolumesBySet[setID]
if !isTracked {
vs.runningVolumesBySet[setID] = []*notionalVolume{
{
epoch: epoch,
value: volumeToAdd.Clone(),
},
}
return
}
notionalVolumeForEpoch := runningVolumeForSet[len(runningVolumeForSet)-1]
if notionalVolumeForEpoch.epoch == epoch {
notionalVolumeForEpoch.value.AddSum(volumeToAdd)
return
}
// If we end up here, it means this set is tracked but this epoch is not.
vs.runningVolumesBySet[setID] = append(runningVolumeForSet, ¬ionalVolume{
epoch: epoch,
value: volumeToAdd.Clone(),
})
}
func (vs *runningVolumes) RunningSetVolumeForWindow(setID types.ReferralSetID, window uint64) *num.Uint {
runningVolumeSet, isTracked := vs.runningVolumesBySet[setID]
if !isTracked {
return num.UintZero()
}
trackedEpochsCount := uint64(len(runningVolumeSet))
startIndex := uint64(0)
if trackedEpochsCount > window {
startIndex = trackedEpochsCount - window
}
runningVolumeForWindow := num.UintZero()
for i := startIndex; i < trackedEpochsCount; i++ {
runningVolumeForWindow.AddSum(runningVolumeSet[i].value)
}
return runningVolumeForWindow
}
func (vs *runningVolumes) RemovePriorEpoch(epoch uint64) {
for setID, volumes := range vs.runningVolumesBySet {
removeBeforeIndex := len(volumes) - 1
for i := len(volumes) - 1; i >= 0; i-- {
if volumes[i].epoch < epoch {
break
}
removeBeforeIndex -= 1
}
if removeBeforeIndex == len(volumes)-1 {
vs.runningVolumesBySet[setID] = []*notionalVolume{}
} else if removeBeforeIndex >= 0 {
vs.runningVolumesBySet[setID] = volumes[removeBeforeIndex:]
}
}
}
func newRunningVolumes() *runningVolumes {
return &runningVolumes{
maxPartyNotionalVolumeByQuantumPerEpoch: num.UintZero(),
runningVolumesBySet: map[types.ReferralSetID][]*notionalVolume{},
}
}