mirror of
https://github.com/0glabs/0g-chain.git
synced 2024-12-26 00:05:18 +00:00
Minor audit fixes (#540)
* use mod and quo to calculate how many auctions to start * check both return values in getDenomPrefix * split auctions using weighted buckets
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aebb3093ff
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c049aad495
@ -32,32 +32,33 @@ func (k Keeper) CreateAuctionsFromDeposit(
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ctx sdk.Context, collateral sdk.Coin, returnAddr sdk.AccAddress, debt, auctionSize sdk.Int,
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principalDenom string) (err error) {
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amountToAuction := collateral.Amount
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totalCollateralAmount := collateral.Amount
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remainingDebt := debt
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if !amountToAuction.IsPositive() {
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return nil
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// the number of auctions to start with lot = auctionSize
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wholeAuctions := collateral.Amount.Quo(auctionSize)
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// remaining collateral (< lot) to auction
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partialAuctionAmount := collateral.Amount.Mod(auctionSize)
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auctionLots := []sdk.Int{}
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for i := int64(0); i < wholeAuctions.Int64(); i++ {
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auctionLots = append(auctionLots, auctionSize)
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}
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for amountToAuction.GT(auctionSize) {
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debtCoveredByAuction := (sdk.NewDecFromInt(auctionSize).Quo(sdk.NewDecFromInt(totalCollateralAmount))).Mul(sdk.NewDecFromInt(debt)).RoundInt()
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penalty := k.ApplyLiquidationPenalty(ctx, collateral.Denom, debtCoveredByAuction)
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if partialAuctionAmount.IsPositive() {
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auctionLots = append(auctionLots, partialAuctionAmount)
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}
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// use the auction lots as weights to split the debt into buckets,
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// where each bucket represents how much debt that auction will attempt to cover
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debtAmounts := splitIntIntoWeightedBuckets(debt, auctionLots)
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debtDenom := k.GetDebtDenom(ctx)
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for i, debtAmount := range debtAmounts {
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penalty := k.ApplyLiquidationPenalty(ctx, collateral.Denom, debtAmount)
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_, err := k.auctionKeeper.StartCollateralAuction(
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ctx, types.LiquidatorMacc, sdk.NewCoin(collateral.Denom, auctionSize), sdk.NewCoin(principalDenom, debtCoveredByAuction.Add(penalty)), []sdk.AccAddress{returnAddr},
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[]sdk.Int{auctionSize}, sdk.NewCoin(k.GetDebtDenom(ctx), debtCoveredByAuction))
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ctx, types.LiquidatorMacc, sdk.NewCoin(collateral.Denom, auctionLots[i]),
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sdk.NewCoin(principalDenom, debtAmount.Add(penalty)), []sdk.AccAddress{returnAddr},
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[]sdk.Int{auctionLots[i]}, sdk.NewCoin(debtDenom, debtAmount),
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)
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if err != nil {
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return err
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}
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amountToAuction = amountToAuction.Sub(auctionSize)
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remainingDebt = remainingDebt.Sub(debtCoveredByAuction)
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}
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penalty := k.ApplyLiquidationPenalty(ctx, collateral.Denom, remainingDebt)
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_, err = k.auctionKeeper.StartCollateralAuction(
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ctx, types.LiquidatorMacc, sdk.NewCoin(collateral.Denom, amountToAuction), sdk.NewCoin(principalDenom, remainingDebt.Add(penalty)), []sdk.AccAddress{returnAddr},
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[]sdk.Int{amountToAuction}, sdk.NewCoin(k.GetDebtDenom(ctx), remainingDebt))
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if err != nil {
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return err
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}
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return nil
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}
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@ -13,6 +13,7 @@ import (
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"github.com/stretchr/testify/suite"
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abci "github.com/tendermint/tendermint/abci/types"
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"github.com/tendermint/tendermint/crypto"
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tmtime "github.com/tendermint/tendermint/types/time"
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)
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@ -22,14 +23,18 @@ type AuctionTestSuite struct {
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keeper keeper.Keeper
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app app.TestApp
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ctx sdk.Context
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addrs []sdk.AccAddress
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}
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func (suite *AuctionTestSuite) SetupTest() {
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config := sdk.GetConfig()
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app.SetBech32AddressPrefixes(config)
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tApp := app.NewTestApp()
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taddr := sdk.AccAddress(crypto.AddressHash([]byte("KavaTestUser1")))
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authGS := app.NewAuthGenState([]sdk.AccAddress{taddr}, []sdk.Coins{cs(c("usdx", 21000000000))})
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ctx := tApp.NewContext(true, abci.Header{Height: 1, Time: tmtime.Now()})
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tApp.InitializeFromGenesisStates(
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authGS,
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NewPricefeedGenStateMulti(),
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NewCDPGenStateMulti(),
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)
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@ -37,6 +42,7 @@ func (suite *AuctionTestSuite) SetupTest() {
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suite.app = tApp
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suite.ctx = ctx
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suite.keeper = keeper
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suite.addrs = []sdk.AccAddress{taddr}
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return
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}
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@ -51,6 +57,15 @@ func (suite *AuctionTestSuite) TestNetDebtSurplus() {
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suite.Equal(cs(c("debt", 90)), acc.GetCoins())
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}
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func (suite *AuctionTestSuite) TestCollateralAuction() {
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sk := suite.app.GetSupplyKeeper()
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err := sk.MintCoins(suite.ctx, types.LiquidatorMacc, cs(c("debt", 21000000000), c("bnb", 190000000000)))
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suite.Require().NoError(err)
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testDeposit := types.NewDeposit(1, suite.addrs[0], c("bnb", 190000000000))
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err = suite.keeper.AuctionCollateral(suite.ctx, types.Deposits{testDeposit}, i(21000000000), "usdx")
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suite.Require().NoError(err)
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}
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func (suite *AuctionTestSuite) TestSurplusAuction() {
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sk := suite.app.GetSupplyKeeper()
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err := sk.MintCoins(suite.ctx, types.LiquidatorMacc, cs(c("usdx", 600000000000)))
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@ -302,14 +302,20 @@ func (k Keeper) RemoveCdpOwnerIndex(ctx sdk.Context, cdp types.CDP) {
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// IndexCdpByCollateralRatio sets the cdp id in the store, indexed by the collateral type and collateral to debt ratio
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func (k Keeper) IndexCdpByCollateralRatio(ctx sdk.Context, denom string, id uint64, collateralRatio sdk.Dec) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CollateralRatioIndexPrefix)
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db, _ := k.GetDenomPrefix(ctx, denom)
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db, found := k.GetDenomPrefix(ctx, denom)
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if !found {
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panic(fmt.Sprintf("denom %s prefix not found", denom))
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}
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store.Set(types.CollateralRatioKey(db, id, collateralRatio), types.GetCdpIDBytes(id))
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}
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// RemoveCdpCollateralRatioIndex deletes the cdp id from the store's index of cdps by collateral type and collateral to debt ratio
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func (k Keeper) RemoveCdpCollateralRatioIndex(ctx sdk.Context, denom string, id uint64, collateralRatio sdk.Dec) {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CollateralRatioIndexPrefix)
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db, _ := k.GetDenomPrefix(ctx, denom)
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db, found := k.GetDenomPrefix(ctx, denom)
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if !found {
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panic(fmt.Sprintf("denom %s prefix not found", denom))
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}
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store.Delete(types.CollateralRatioKey(db, id, collateralRatio))
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}
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@ -83,6 +83,7 @@ func NewPricefeedGenStateMulti() app.GenesisState {
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Markets: []pricefeed.Market{
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{MarketID: "btc:usd", BaseAsset: "btc", QuoteAsset: "usd", Oracles: []sdk.AccAddress{}, Active: true},
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{MarketID: "xrp:usd", BaseAsset: "xrp", QuoteAsset: "usd", Oracles: []sdk.AccAddress{}, Active: true},
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{MarketID: "bnb:usd", BaseAsset: "bnb", QuoteAsset: "usd", Oracles: []sdk.AccAddress{}, Active: true},
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},
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},
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PostedPrices: []pricefeed.PostedPrice{
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@ -98,6 +99,12 @@ func NewPricefeedGenStateMulti() app.GenesisState {
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Price: sdk.MustNewDecFromStr("0.25"),
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Expiry: time.Now().Add(1 * time.Hour),
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},
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{
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MarketID: "bnb:usd",
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OracleAddress: sdk.AccAddress{},
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Price: sdk.MustNewDecFromStr("17.25"),
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Expiry: time.Now().Add(1 * time.Hour),
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},
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},
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}
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return app.GenesisState{pricefeed.ModuleName: pricefeed.ModuleCdc.MustMarshalJSON(pfGenesis)}
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@ -105,7 +112,7 @@ func NewPricefeedGenStateMulti() app.GenesisState {
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func NewCDPGenStateMulti() app.GenesisState {
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cdpGenesis := cdp.GenesisState{
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Params: cdp.Params{
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GlobalDebtLimit: sdk.NewInt64Coin("usdx", 1000000000000),
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GlobalDebtLimit: sdk.NewInt64Coin("usdx", 1500000000000),
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SurplusAuctionThreshold: cdp.DefaultSurplusThreshold,
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SurplusAuctionLot: cdp.DefaultSurplusLot,
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DebtAuctionThreshold: cdp.DefaultDebtThreshold,
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@ -136,6 +143,18 @@ func NewCDPGenStateMulti() app.GenesisState {
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LiquidationMarketID: "btc:usd",
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ConversionFactor: i(8),
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},
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{
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Denom: "bnb",
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LiquidationRatio: sdk.MustNewDecFromStr("1.5"),
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DebtLimit: sdk.NewInt64Coin("usdx", 500000000000),
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StabilityFee: sdk.MustNewDecFromStr("1.000000001547125958"), // %5 apr
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LiquidationPenalty: d("0.05"),
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AuctionSize: i(50000000000),
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Prefix: 0x22,
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SpotMarketID: "bnb:usd",
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LiquidationMarketID: "bnb:usd",
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ConversionFactor: i(8),
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},
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},
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DebtParam: cdp.DebtParam{
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Denom: "usdx",
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@ -45,7 +45,10 @@ func NewKeeper(cdc *codec.Codec, key sdk.StoreKey, paramstore subspace.Subspace,
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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, denom string) sdk.Iterator {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CdpKeyPrefix)
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db, _ := k.GetDenomPrefix(ctx, denom)
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db, found := k.GetDenomPrefix(ctx, denom)
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if !found {
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panic(fmt.Sprintf("denom %s prefix not found", denom))
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}
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return sdk.KVStorePrefixIterator(store, types.DenomIterKey(db))
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}
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@ -53,7 +56,10 @@ func (k Keeper) CdpDenomIndexIterator(ctx sdk.Context, denom string) sdk.Iterato
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// matching denom and collateral:debt ratio LESS THAN targetRatio
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func (k Keeper) CdpCollateralRatioIndexIterator(ctx sdk.Context, denom string, targetRatio sdk.Dec) sdk.Iterator {
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store := prefix.NewStore(ctx.KVStore(k.key), types.CollateralRatioIndexPrefix)
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db, _ := k.GetDenomPrefix(ctx, denom)
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db, found := k.GetDenomPrefix(ctx, denom)
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if !found {
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panic(fmt.Sprintf("denom %s prefix not found", denom))
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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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81
x/cdp/keeper/math.go
Normal file
81
x/cdp/keeper/math.go
Normal file
@ -0,0 +1,81 @@
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package keeper
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import (
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"sort"
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sdk "github.com/cosmos/cosmos-sdk/types"
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)
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// splitIntIntoWeightedBuckets divides an initial +ve integer among several buckets in proportion to the buckets' weights
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// It uses the largest remainder method: https://en.wikipedia.org/wiki/Largest_remainder_method
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// See also: https://stackoverflow.com/questions/13483430/how-to-make-rounded-percentages-add-up-to-100
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// note - copied from auction, tests are located there.
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func splitIntIntoWeightedBuckets(amount sdk.Int, buckets []sdk.Int) []sdk.Int {
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// Limit input to +ve numbers as algorithm hasn't been scoped to work with -ve numbers.
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if amount.IsNegative() {
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panic("negative amount")
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}
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if len(buckets) < 1 {
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panic("no buckets")
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}
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for _, bucket := range buckets {
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if bucket.IsNegative() {
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panic("negative bucket")
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}
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}
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// 1) Split the amount by weights, recording whole number part and remainder
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totalWeights := totalInts(buckets...)
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if !totalWeights.IsPositive() {
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panic("total weights must sum to > 0")
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}
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quotients := make([]quoRem, len(buckets))
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for i := range buckets {
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// amount * ( weight/total_weight )
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q := amount.Mul(buckets[i]).Quo(totalWeights)
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r := amount.Mul(buckets[i]).Mod(totalWeights)
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quotients[i] = quoRem{index: i, quo: q, rem: r}
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}
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// 2) Calculate total left over from remainders, and apportion it to buckets with the highest remainder (to minimize error)
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// sort by decreasing remainder order
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sort.Slice(quotients, func(i, j int) bool {
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return quotients[i].rem.GT(quotients[j].rem)
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})
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// calculate total left over from remainders
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allocated := sdk.ZeroInt()
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for _, qr := range quotients {
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allocated = allocated.Add(qr.quo)
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}
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leftToAllocate := amount.Sub(allocated)
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// apportion according to largest remainder
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results := make([]sdk.Int, len(quotients))
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for _, qr := range quotients {
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results[qr.index] = qr.quo
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if !leftToAllocate.IsZero() {
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results[qr.index] = results[qr.index].Add(sdk.OneInt())
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leftToAllocate = leftToAllocate.Sub(sdk.OneInt())
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}
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}
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return results
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}
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type quoRem struct {
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index int
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quo sdk.Int
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rem sdk.Int
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}
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// totalInts adds together sdk.Ints
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func totalInts(is ...sdk.Int) sdk.Int {
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total := sdk.ZeroInt()
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for _, i := range is {
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total = total.Add(i)
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}
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return total
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}
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