mirror of
https://github.com/0glabs/0g-chain.git
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c63ecf908a
* Add 'InterestFactor' to CDP type (#734) * update cdp type to include interest factor * fix build * Add cdp accumulator methods (#735) * remame fees to interest * add accumulate interest method * add basic test * add note * address review comments * update tests * Add sync cdp interest method (#737) * remame fees to interest * add accumulate interest method * add basic test * add note * address review comments * update tests * remove old fee functions * add method to synchronize cdp interest * add multi-cdp tests * add test with many blocks * add test for interest getter * address review comments * calculate time difference then convert to seconds * fix: update collateral index when syncing interest * fix: differentiate between case when apy is zero and all fees are being rounded to zero * fix: round time difference properly * update cdp genesis state and migrations (#738) * remame fees to interest * add accumulate interest method * add basic test * add note * address review comments * update tests * remove old fee functions * add method to synchronize cdp interest * add multi-cdp tests * add test with many blocks * add test for interest getter * update cdp genesis state and migrations * address review comments * calculate time difference then convert to seconds * fix: update collateral index when syncing interest * fix: differentiate between case when apy is zero and all fees are being rounded to zero * fix: simplify add/remove/update collateral index * update genesis state to include total principal amounts * update migration * Delete kava-4-cdp-state-block-500000.json * Add cdp liquidations by external keeper (#750) * feat: split liquidations between external keepers and automated begin blocker * address review comments * USDX incentive accumulators (#752) * feat: split liquidations between external keepers and automated begin blocker * wip: refactor usdx minting incentives to use accumulators/hooks * wip: refactor usdx minting claim object * feat: use accumulators/hooks for usdx minting rewards * fix: get tests passing * fix: don't create claim objects unless that cdp type is eligable for rewards * add begin blocker * update client * cleanup comments/tests * update querier * address review comments * fix: check for division by zero * address review comments * run hook before interest is synced * Remove savings rate (#764) * remove savings rate * remove savings rate from debt param * update migrations * address review comments * Add usdx incentives calculation test (#765) * add usdx incentive calculation test * update reward calculation * add allowable error to test criteria * Update x/incentive/keeper/rewards_test.go Co-authored-by: Kevin Davis <karzak@users.noreply.github.com> * fix: remove old fields from test genesis state Co-authored-by: Ruaridh <rhuairahrighairidh@users.noreply.github.com> Co-authored-by: Ruaridh <rhuairahrighairidh@users.noreply.github.com>
228 lines
8.6 KiB
Go
228 lines
8.6 KiB
Go
package keeper
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import (
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"fmt"
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"time"
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"github.com/cosmos/cosmos-sdk/codec"
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"github.com/cosmos/cosmos-sdk/store/prefix"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/cosmos/cosmos-sdk/x/params/subspace"
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"github.com/kava-labs/kava/x/cdp/types"
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)
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// Keeper keeper for the cdp module
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type Keeper struct {
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key sdk.StoreKey
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cdc *codec.Codec
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paramSubspace subspace.Subspace
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pricefeedKeeper types.PricefeedKeeper
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supplyKeeper types.SupplyKeeper
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auctionKeeper types.AuctionKeeper
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accountKeeper types.AccountKeeper
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hooks types.CDPHooks
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maccPerms map[string][]string
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}
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// NewKeeper creates a new keeper
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func NewKeeper(cdc *codec.Codec, key sdk.StoreKey, paramstore subspace.Subspace, pfk types.PricefeedKeeper,
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ak types.AuctionKeeper, sk types.SupplyKeeper, ack types.AccountKeeper, maccs map[string][]string) Keeper {
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if !paramstore.HasKeyTable() {
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paramstore = paramstore.WithKeyTable(types.ParamKeyTable())
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}
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return Keeper{
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key: key,
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cdc: cdc,
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paramSubspace: paramstore,
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pricefeedKeeper: pfk,
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auctionKeeper: ak,
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supplyKeeper: sk,
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accountKeeper: ack,
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hooks: nil,
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maccPerms: maccs,
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}
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}
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// SetHooks sets the cdp keeper hooks
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func (k *Keeper) SetHooks(hooks types.CDPHooks) *Keeper {
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if k.hooks != nil {
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panic("cannot set validator hooks twice")
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}
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k.hooks = hooks
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return k
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}
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// CdpDenomIndexIterator returns an sdk.Iterator for all cdps with matching collateral denom
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func (k Keeper) CdpDenomIndexIterator(ctx sdk.Context, collateralType string) sdk.Iterator {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CdpKeyPrefix)
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db, found := k.GetCollateralTypePrefix(ctx, collateralType)
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if !found {
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panic(fmt.Sprintf("denom %s prefix not found", collateralType))
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}
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return sdk.KVStorePrefixIterator(store, types.DenomIterKey(db))
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}
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// CdpCollateralRatioIndexIterator returns an sdk.Iterator for all cdps that have collateral denom
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// matching denom and collateral:debt ratio LESS THAN targetRatio
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func (k Keeper) CdpCollateralRatioIndexIterator(ctx sdk.Context, collateralType string, targetRatio sdk.Dec) sdk.Iterator {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CollateralRatioIndexPrefix)
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db, found := k.GetCollateralTypePrefix(ctx, collateralType)
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if !found {
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panic(fmt.Sprintf("denom %s prefix not found", collateralType))
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}
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return store.Iterator(types.CollateralRatioIterKey(db, sdk.ZeroDec()), types.CollateralRatioIterKey(db, targetRatio))
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}
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// IterateAllCdps iterates over all cdps and performs a callback function
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func (k Keeper) IterateAllCdps(ctx sdk.Context, cb func(cdp types.CDP) (stop bool)) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CdpKeyPrefix)
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iterator := sdk.KVStorePrefixIterator(store, []byte{})
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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var cdp types.CDP
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k.cdc.MustUnmarshalBinaryLengthPrefixed(iterator.Value(), &cdp)
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if cb(cdp) {
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break
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}
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}
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}
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// IterateCdpsByCollateralType iterates over cdps with matching denom and performs a callback function
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func (k Keeper) IterateCdpsByCollateralType(ctx sdk.Context, collateralType string, cb func(cdp types.CDP) (stop bool)) {
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iterator := k.CdpDenomIndexIterator(ctx, collateralType)
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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var cdp types.CDP
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k.cdc.MustUnmarshalBinaryLengthPrefixed(iterator.Value(), &cdp)
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if cb(cdp) {
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break
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}
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}
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}
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// IterateCdpsByCollateralRatio iterate over cdps with collateral denom equal to denom and
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// collateral:debt ratio LESS THAN targetRatio and performs a callback function.
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func (k Keeper) IterateCdpsByCollateralRatio(ctx sdk.Context, collateralType string, targetRatio sdk.Dec, cb func(cdp types.CDP) (stop bool)) {
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iterator := k.CdpCollateralRatioIndexIterator(ctx, collateralType, targetRatio)
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defer iterator.Close()
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for ; iterator.Valid(); iterator.Next() {
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_, id, _ := types.SplitCollateralRatioKey(iterator.Key())
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cdp, found := k.GetCDP(ctx, collateralType, id)
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if !found {
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panic(fmt.Sprintf("cdp %d does not exist", id))
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}
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if cb(cdp) {
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break
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}
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}
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}
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// GetSliceOfCDPsByRatioAndType returns a slice of cdps of size equal to the input cutoffCount
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// sorted by target ratio in ascending order (ie, the lowest collateral:debt ratio cdps are returned first)
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func (k Keeper) GetSliceOfCDPsByRatioAndType(ctx sdk.Context, cutoffCount sdk.Int, targetRatio sdk.Dec, collateralType string) (cdps types.CDPs) {
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count := sdk.ZeroInt()
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k.IterateCdpsByCollateralRatio(ctx, collateralType, targetRatio, func(cdp types.CDP) bool {
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cdps = append(cdps, cdp)
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count = count.Add(sdk.OneInt())
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if count.GTE(cutoffCount) {
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return true
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}
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return false
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})
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return cdps
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}
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// GetPreviousAccrualTime returns the last time an individual market accrued interest
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func (k Keeper) GetPreviousAccrualTime(ctx sdk.Context, ctype string) (time.Time, bool) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.PreviousAccrualTimePrefix)
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bz := store.Get([]byte(ctype))
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if bz == nil {
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return time.Time{}, false
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}
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var previousAccrualTime time.Time
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k.cdc.MustUnmarshalBinaryBare(bz, &previousAccrualTime)
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return previousAccrualTime, true
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}
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// SetPreviousAccrualTime sets the most recent accrual time for a particular market
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func (k Keeper) SetPreviousAccrualTime(ctx sdk.Context, ctype string, previousAccrualTime time.Time) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.PreviousAccrualTimePrefix)
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bz := k.cdc.MustMarshalBinaryBare(previousAccrualTime)
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store.Set([]byte(ctype), bz)
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}
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// GetInterestFactor returns the current interest factor for an individual collateral type
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func (k Keeper) GetInterestFactor(ctx sdk.Context, ctype string) (sdk.Dec, bool) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.InterestFactorPrefix)
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bz := store.Get([]byte(ctype))
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if bz == nil {
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return sdk.ZeroDec(), false
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}
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var interestFactor sdk.Dec
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k.cdc.MustUnmarshalBinaryBare(bz, &interestFactor)
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return interestFactor, true
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}
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// SetInterestFactor sets the current interest factor for an individual collateral type
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func (k Keeper) SetInterestFactor(ctx sdk.Context, ctype string, interestFactor sdk.Dec) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.InterestFactorPrefix)
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bz := k.cdc.MustMarshalBinaryBare(interestFactor)
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store.Set([]byte(ctype), bz)
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}
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// IncrementTotalPrincipal increments the total amount of debt that has been drawn with that collateral type
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func (k Keeper) IncrementTotalPrincipal(ctx sdk.Context, collateralType string, principal sdk.Coin) {
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total := k.GetTotalPrincipal(ctx, collateralType, principal.Denom)
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total = total.Add(principal.Amount)
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k.SetTotalPrincipal(ctx, collateralType, principal.Denom, total)
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}
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// DecrementTotalPrincipal decrements the total amount of debt that has been drawn for a particular collateral type
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func (k Keeper) DecrementTotalPrincipal(ctx sdk.Context, collateralType string, principal sdk.Coin) {
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total := k.GetTotalPrincipal(ctx, collateralType, principal.Denom)
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// NOTE: negative total principal can happen in tests due to rounding errors
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// in fee calculation
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total = sdk.MaxInt(total.Sub(principal.Amount), sdk.ZeroInt())
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k.SetTotalPrincipal(ctx, collateralType, principal.Denom, total)
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}
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// GetTotalPrincipal returns the total amount of principal that has been drawn for a particular collateral
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func (k Keeper) GetTotalPrincipal(ctx sdk.Context, collateralType, principalDenom string) (total sdk.Int) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.PrincipalKeyPrefix)
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bz := store.Get([]byte(collateralType + principalDenom))
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if bz == nil {
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k.SetTotalPrincipal(ctx, collateralType, principalDenom, sdk.ZeroInt())
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return sdk.ZeroInt()
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}
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k.cdc.MustUnmarshalBinaryLengthPrefixed(bz, &total)
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return total
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}
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// SetTotalPrincipal sets the total amount of principal that has been drawn for the input collateral
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func (k Keeper) SetTotalPrincipal(ctx sdk.Context, collateralType, principalDenom string, total sdk.Int) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.PrincipalKeyPrefix)
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_, found := k.GetCollateralTypePrefix(ctx, collateralType)
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if !found {
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panic(fmt.Sprintf("collateral not found: %s", collateralType))
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}
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store.Set([]byte(collateralType+principalDenom), k.cdc.MustMarshalBinaryLengthPrefixed(total))
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}
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// getModuleAccountCoins gets the total coin balance of this coin currently held by module accounts
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func (k Keeper) getModuleAccountCoins(ctx sdk.Context, denom string) sdk.Coins {
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totalModCoinBalance := sdk.NewCoins(sdk.NewCoin(denom, sdk.ZeroInt()))
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for macc := range k.maccPerms {
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modCoinBalance := k.supplyKeeper.GetModuleAccount(ctx, macc).GetCoins().AmountOf(denom)
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if modCoinBalance.IsPositive() {
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totalModCoinBalance = totalModCoinBalance.Add(sdk.NewCoin(denom, modCoinBalance))
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}
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}
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return totalModCoinBalance
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}
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