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42c0b187f4
* group reward code by type * split out usdx reward tests into own file * split out delegator reward tests into own file * split supply borrow reward tests into own files * sync order of test functions in files
732 lines
32 KiB
Go
732 lines
32 KiB
Go
package keeper_test
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import (
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"time"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/cosmos/cosmos-sdk/x/staking"
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abci "github.com/tendermint/tendermint/abci/types"
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"github.com/tendermint/tendermint/crypto/ed25519"
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"github.com/kava-labs/kava/x/hard"
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hardtypes "github.com/kava-labs/kava/x/hard/types"
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"github.com/kava-labs/kava/x/incentive/types"
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)
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func (suite *KeeperTestSuite) TestAccumulateHardDelegatorRewards() {
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type args struct {
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delegation sdk.Coin
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rewardsPerSecond sdk.Coin
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initialTime time.Time
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timeElapsed int
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expectedRewardFactor sdk.Dec
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}
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type test struct {
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name string
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args args
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}
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testCases := []test{
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{
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"7 seconds",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: c("hard", 122354),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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timeElapsed: 7,
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expectedRewardFactor: d("0.428239000000000000"),
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},
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},
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{
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"1 day",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: c("hard", 122354),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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timeElapsed: 86400,
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expectedRewardFactor: d("5285.692800000000000000"),
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},
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},
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{
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"0 seconds",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: c("hard", 122354),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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timeElapsed: 0,
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expectedRewardFactor: d("0.0"),
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},
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},
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}
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for _, tc := range testCases {
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suite.Run(tc.name, func() {
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suite.SetupWithGenState()
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suite.ctx = suite.ctx.WithBlockTime(tc.args.initialTime)
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// Mint coins to hard module account
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supplyKeeper := suite.app.GetSupplyKeeper()
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hardMaccCoins := sdk.NewCoins(sdk.NewCoin("usdx", sdk.NewInt(200000000)))
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supplyKeeper.MintCoins(suite.ctx, hardtypes.ModuleAccountName, hardMaccCoins)
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// Set up incentive state
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params := types.NewParams(
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types.RewardPeriods{types.NewRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond)},
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types.MultiRewardPeriods{types.NewMultiRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), cs(tc.args.rewardsPerSecond))},
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types.MultiRewardPeriods{types.NewMultiRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), cs(tc.args.rewardsPerSecond))},
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types.RewardPeriods{types.NewRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond)},
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types.Multipliers{types.NewMultiplier(types.MultiplierName("small"), 1, d("0.25")), types.NewMultiplier(types.MultiplierName("large"), 12, d("1.0"))},
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tc.args.initialTime.Add(time.Hour*24*365*5),
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)
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suite.keeper.SetParams(suite.ctx, params)
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suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, tc.args.delegation.Denom, tc.args.initialTime)
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suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, tc.args.delegation.Denom, sdk.ZeroDec())
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// Set up hard state (interest factor for the relevant denom)
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suite.hardKeeper.SetPreviousAccrualTime(suite.ctx, tc.args.delegation.Denom, tc.args.initialTime)
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err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], tc.args.delegation)
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suite.Require().NoError(err)
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err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[0], tc.args.delegation)
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suite.Require().NoError(err)
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staking.EndBlocker(suite.ctx, suite.stakingKeeper)
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// Set up chain context at future time
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runAtTime := suite.ctx.BlockTime().Add(time.Duration(int(time.Second) * tc.args.timeElapsed))
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runCtx := suite.ctx.WithBlockTime(runAtTime)
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// Run Hard begin blocker in order to update the denom's index factor
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hard.BeginBlocker(runCtx, suite.hardKeeper)
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rewardPeriod, found := suite.keeper.GetHardDelegatorRewardPeriod(runCtx, tc.args.delegation.Denom)
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suite.Require().True(found)
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err = suite.keeper.AccumulateHardDelegatorRewards(runCtx, rewardPeriod)
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suite.Require().NoError(err)
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rewardFactor, found := suite.keeper.GetHardDelegatorRewardFactor(runCtx, tc.args.delegation.Denom)
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suite.Require().Equal(tc.args.expectedRewardFactor, rewardFactor)
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})
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}
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}
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func (suite *KeeperTestSuite) TestSynchronizeHardDelegatorReward() {
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type args struct {
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delegation sdk.Coin
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rewardsPerSecond sdk.Coin
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initialTime time.Time
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blockTimes []int
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expectedRewardFactor sdk.Dec
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expectedRewards sdk.Coins
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}
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type test struct {
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name string
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args args
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}
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testCases := []test{
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{
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"10 blocks",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: c("hard", 122354),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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blockTimes: []int{10, 10, 10, 10, 10, 10, 10, 10, 10, 10},
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expectedRewardFactor: d("6.117700000000000000"),
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expectedRewards: cs(c("hard", 6117700)),
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},
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},
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{
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"10 blocks - long block time",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: c("hard", 122354),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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blockTimes: []int{86400, 86400, 86400, 86400, 86400, 86400, 86400, 86400, 86400, 86400},
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expectedRewardFactor: d("52856.928000000000000000"),
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expectedRewards: cs(c("hard", 52856928000)),
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},
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},
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{
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"delegator reward index updated when reward is zero",
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args{
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delegation: c("ukava", 1),
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rewardsPerSecond: c("hard", 1),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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blockTimes: []int{10, 10, 10, 10, 10, 10, 10, 10, 10, 10},
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expectedRewardFactor: d("0.000099999900000100"),
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expectedRewards: nil,
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},
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},
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}
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for _, tc := range testCases {
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suite.Run(tc.name, func() {
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suite.SetupWithGenState()
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suite.ctx = suite.ctx.WithBlockTime(tc.args.initialTime)
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// Mint coins to hard module account
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supplyKeeper := suite.app.GetSupplyKeeper()
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hardMaccCoins := sdk.NewCoins(sdk.NewCoin("usdx", sdk.NewInt(200000000)))
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supplyKeeper.MintCoins(suite.ctx, hardtypes.ModuleAccountName, hardMaccCoins)
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// setup incentive state
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params := types.NewParams(
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types.RewardPeriods{types.NewRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond)},
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types.MultiRewardPeriods{types.NewMultiRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), cs(tc.args.rewardsPerSecond))},
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types.MultiRewardPeriods{types.NewMultiRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), cs(tc.args.rewardsPerSecond))},
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types.RewardPeriods{types.NewRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond)},
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types.Multipliers{types.NewMultiplier(types.MultiplierName("small"), 1, d("0.25")), types.NewMultiplier(types.MultiplierName("large"), 12, d("1.0"))},
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tc.args.initialTime.Add(time.Hour*24*365*5),
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)
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suite.keeper.SetParams(suite.ctx, params)
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suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, tc.args.delegation.Denom, tc.args.initialTime)
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suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, tc.args.delegation.Denom, sdk.ZeroDec())
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// Set up hard state (interest factor for the relevant denom)
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suite.hardKeeper.SetPreviousAccrualTime(suite.ctx, tc.args.delegation.Denom, tc.args.initialTime)
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// Create validator account
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staking.BeginBlocker(suite.ctx, suite.stakingKeeper)
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selfDelegationCoins := c("ukava", 1_000_000)
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err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], selfDelegationCoins)
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suite.Require().NoError(err)
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staking.EndBlocker(suite.ctx, suite.stakingKeeper)
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// Delegator delegates
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err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[0], tc.args.delegation)
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suite.Require().NoError(err)
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// Check that validator account has been created and delegation was successful
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valAcc, found := suite.stakingKeeper.GetValidator(suite.ctx, suite.validatorAddrs[0])
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suite.True(found)
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suite.Require().Equal(valAcc.Status, sdk.Bonded)
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suite.Require().Equal(valAcc.Tokens, tc.args.delegation.Amount.Add(selfDelegationCoins.Amount))
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// Check that Staking hooks initialized a HardLiquidityProviderClaim
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claim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
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suite.Require().True(found)
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suite.Require().Equal(sdk.ZeroDec(), claim.DelegatorRewardIndexes[0].RewardFactor)
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// Run accumulator at several intervals
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var timeElapsed int
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previousBlockTime := suite.ctx.BlockTime()
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for _, t := range tc.args.blockTimes {
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timeElapsed += t
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updatedBlockTime := previousBlockTime.Add(time.Duration(int(time.Second) * t))
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previousBlockTime = updatedBlockTime
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blockCtx := suite.ctx.WithBlockTime(updatedBlockTime)
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// Run Hard begin blocker for each block ctx to update denom's interest factor
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hard.BeginBlocker(blockCtx, suite.hardKeeper)
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rewardPeriod, found := suite.keeper.GetHardDelegatorRewardPeriod(blockCtx, tc.args.delegation.Denom)
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suite.Require().True(found)
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err := suite.keeper.AccumulateHardDelegatorRewards(blockCtx, rewardPeriod)
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suite.Require().NoError(err)
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}
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updatedBlockTime := suite.ctx.BlockTime().Add(time.Duration(int(time.Second) * timeElapsed))
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suite.ctx = suite.ctx.WithBlockTime(updatedBlockTime)
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// After we've accumulated, run synchronize
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suite.Require().NotPanics(func() {
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suite.keeper.SynchronizeHardDelegatorRewards(suite.ctx, suite.addrs[0], nil, false)
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})
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// Check that reward factor and claim have been updated as expected
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rewardFactor, found := suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, tc.args.delegation.Denom)
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suite.Require().Equal(tc.args.expectedRewardFactor, rewardFactor)
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claim, found = suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
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suite.Require().True(found)
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suite.Require().Equal(tc.args.expectedRewardFactor, claim.DelegatorRewardIndexes[0].RewardFactor)
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suite.Require().Equal(tc.args.expectedRewards, claim.Reward)
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})
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}
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}
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func (suite *KeeperTestSuite) TestSimulateHardDelegatorRewardSynchronization() {
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type args struct {
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delegation sdk.Coin
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rewardsPerSecond sdk.Coins
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initialTime time.Time
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blockTimes []int
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expectedRewardIndexes types.RewardIndexes
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expectedRewards sdk.Coins
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}
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type test struct {
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name string
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args args
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}
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testCases := []test{
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{
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"10 blocks",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: cs(c("hard", 122354)),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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blockTimes: []int{10, 10, 10, 10, 10, 10, 10, 10, 10, 10},
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expectedRewardIndexes: types.RewardIndexes{types.NewRewardIndex("ukava", d("6.117700000000000000"))}, // Here the reward index stores data differently than inside a MultiRewardIndex
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expectedRewards: cs(c("hard", 6117700)),
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},
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},
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{
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"10 blocks - long block time",
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args{
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delegation: c("ukava", 1_000_000),
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rewardsPerSecond: cs(c("hard", 122354)),
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initialTime: time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC),
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blockTimes: []int{86400, 86400, 86400, 86400, 86400, 86400, 86400, 86400, 86400, 86400},
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expectedRewardIndexes: types.RewardIndexes{types.NewRewardIndex("ukava", d("52856.928000000000000000"))},
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expectedRewards: cs(c("hard", 52856928000)),
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},
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},
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}
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for _, tc := range testCases {
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suite.Run(tc.name, func() {
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suite.SetupWithGenState()
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suite.ctx = suite.ctx.WithBlockTime(tc.args.initialTime)
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// Mint coins to hard module account
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supplyKeeper := suite.app.GetSupplyKeeper()
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hardMaccCoins := sdk.NewCoins(sdk.NewCoin("usdx", sdk.NewInt(200000000)))
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supplyKeeper.MintCoins(suite.ctx, hardtypes.ModuleAccountName, hardMaccCoins)
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// setup incentive state
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params := types.NewParams(
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types.RewardPeriods{types.NewRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond[0])},
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types.MultiRewardPeriods{types.NewMultiRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond)},
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types.MultiRewardPeriods{types.NewMultiRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond)},
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types.RewardPeriods{types.NewRewardPeriod(true, tc.args.delegation.Denom, tc.args.initialTime, tc.args.initialTime.Add(time.Hour*24*365*4), tc.args.rewardsPerSecond[0])},
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types.Multipliers{types.NewMultiplier(types.MultiplierName("small"), 1, d("0.25")), types.NewMultiplier(types.MultiplierName("large"), 12, d("1.0"))},
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tc.args.initialTime.Add(time.Hour*24*365*5),
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)
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suite.keeper.SetParams(suite.ctx, params)
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suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, tc.args.delegation.Denom, tc.args.initialTime)
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suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, tc.args.delegation.Denom, sdk.ZeroDec())
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// Set up hard state (interest factor for the relevant denom)
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suite.hardKeeper.SetPreviousAccrualTime(suite.ctx, tc.args.delegation.Denom, tc.args.initialTime)
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// Delegator delegates
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err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], tc.args.delegation)
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suite.Require().NoError(err)
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err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[0], tc.args.delegation)
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suite.Require().NoError(err)
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staking.EndBlocker(suite.ctx, suite.stakingKeeper)
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// Check that Staking hooks initialized a HardLiquidityProviderClaim
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claim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
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suite.Require().True(found)
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suite.Require().Equal(sdk.ZeroDec(), claim.DelegatorRewardIndexes[0].RewardFactor)
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// Run accumulator at several intervals
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var timeElapsed int
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previousBlockTime := suite.ctx.BlockTime()
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for _, t := range tc.args.blockTimes {
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timeElapsed += t
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updatedBlockTime := previousBlockTime.Add(time.Duration(int(time.Second) * t))
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previousBlockTime = updatedBlockTime
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blockCtx := suite.ctx.WithBlockTime(updatedBlockTime)
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// Run Hard begin blocker for each block ctx to update denom's interest factor
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hard.BeginBlocker(blockCtx, suite.hardKeeper)
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// Accumulate hard delegator rewards
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rewardPeriod, found := suite.keeper.GetHardDelegatorRewardPeriod(blockCtx, tc.args.delegation.Denom)
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suite.Require().True(found)
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err := suite.keeper.AccumulateHardDelegatorRewards(blockCtx, rewardPeriod)
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suite.Require().NoError(err)
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}
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updatedBlockTime := suite.ctx.BlockTime().Add(time.Duration(int(time.Second) * timeElapsed))
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suite.ctx = suite.ctx.WithBlockTime(updatedBlockTime)
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// Check that the synced claim held in memory has properly simulated syncing
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syncedClaim := suite.keeper.SimulateHardSynchronization(suite.ctx, claim)
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for _, expectedRewardIndex := range tc.args.expectedRewardIndexes {
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// Check that the user's claim's reward index matches the expected reward index
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rewardIndex, found := syncedClaim.DelegatorRewardIndexes.GetRewardIndex(expectedRewardIndex.CollateralType)
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suite.Require().True(found)
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suite.Require().Equal(expectedRewardIndex, rewardIndex)
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// Check that the user's claim holds the expected amount of reward coins
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suite.Require().Equal(
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tc.args.expectedRewards.AmountOf(expectedRewardIndex.CollateralType),
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syncedClaim.Reward.AmountOf(expectedRewardIndex.CollateralType),
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)
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}
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})
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}
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}
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func (suite *KeeperTestSuite) deliverMsgCreateValidator(ctx sdk.Context, address sdk.ValAddress, selfDelegation sdk.Coin) error {
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msg := staking.NewMsgCreateValidator(
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address,
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ed25519.GenPrivKey().PubKey(),
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selfDelegation,
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staking.Description{},
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staking.NewCommissionRates(sdk.ZeroDec(), sdk.ZeroDec(), sdk.ZeroDec()),
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sdk.NewInt(1_000_000),
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)
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handleStakingMsg := staking.NewHandler(suite.stakingKeeper)
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_, err := handleStakingMsg(ctx, msg)
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return err
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}
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func (suite *KeeperTestSuite) deliverMsgDelegate(ctx sdk.Context, delegator sdk.AccAddress, validator sdk.ValAddress, amount sdk.Coin) error {
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msg := staking.NewMsgDelegate(
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|
delegator,
|
|
validator,
|
|
amount,
|
|
)
|
|
handleStakingMsg := staking.NewHandler(suite.stakingKeeper)
|
|
_, err := handleStakingMsg(ctx, msg)
|
|
return err
|
|
}
|
|
|
|
func (suite *KeeperTestSuite) deliverMsgRedelegate(ctx sdk.Context, delegator sdk.AccAddress, sourceValidator, destinationValidator sdk.ValAddress, amount sdk.Coin) error {
|
|
msg := staking.NewMsgBeginRedelegate(
|
|
delegator,
|
|
sourceValidator,
|
|
destinationValidator,
|
|
amount,
|
|
)
|
|
handleStakingMsg := staking.NewHandler(suite.stakingKeeper)
|
|
_, err := handleStakingMsg(ctx, msg)
|
|
return err
|
|
}
|
|
|
|
// given a user has a delegation to a bonded validator, when the validator starts unbonding, the user does not accumulate rewards
|
|
func (suite *KeeperTestSuite) TestUnbondingValidatorSyncsClaim() {
|
|
suite.SetupWithGenState()
|
|
initialTime := time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC)
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime)
|
|
blockDuration := 10 * time.Second
|
|
|
|
// Setup incentive state
|
|
rewardsPerSecond := c("hard", 122354)
|
|
bondDenom := "ukava"
|
|
params := types.NewParams(
|
|
nil,
|
|
nil,
|
|
nil,
|
|
types.RewardPeriods{
|
|
types.NewRewardPeriod(true, bondDenom, initialTime.Add(-1*oneYear), initialTime.Add(4*oneYear), rewardsPerSecond),
|
|
},
|
|
types.DefaultMultipliers,
|
|
initialTime.Add(5*oneYear),
|
|
)
|
|
suite.keeper.SetParams(suite.ctx, params)
|
|
suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, bondDenom, initialTime)
|
|
suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, bondDenom, sdk.ZeroDec())
|
|
|
|
// Reduce the size of the validator set
|
|
stakingParams := suite.app.GetStakingKeeper().GetParams(suite.ctx)
|
|
stakingParams.MaxValidators = 2
|
|
suite.app.GetStakingKeeper().SetParams(suite.ctx, stakingParams)
|
|
|
|
// Create 3 validators
|
|
err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], c(bondDenom, 10_000_000))
|
|
suite.Require().NoError(err)
|
|
err = suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[1], c(bondDenom, 5_000_000))
|
|
suite.Require().NoError(err)
|
|
err = suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[2], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// End the block so top validators become bonded
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(1 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{}) // height and time in header are ignored by module begin blockers
|
|
|
|
// Delegate to a bonded validator from the test user. This will initialize their incentive claim.
|
|
err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[1], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// Start a new block to accumulate some delegation rewards for the user.
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(2 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{}) // height and time in header are ignored by module begin blockers
|
|
|
|
// Delegate to the unbonded validator to push it into the bonded validator set, pushing out the user's delegated validator
|
|
err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[2], suite.validatorAddrs[2], c(bondDenom, 8_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// End the block to start unbonding the user's validator
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
// but don't start the next block as it will accumulate delegator rewards and we won't be able to tell if the user's reward was synced.
|
|
|
|
// Check that the user's claim has been synced. ie rewards added, index updated
|
|
claim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.Require().True(found)
|
|
|
|
globalIndex, found := suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.Require().True(found)
|
|
claimIndex, found := claim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(globalIndex, claimIndex.RewardFactor)
|
|
|
|
suite.Require().Equal(
|
|
cs(c(rewardsPerSecond.Denom, 76471)),
|
|
claim.Reward,
|
|
)
|
|
|
|
// Run another block and check the claim is not accumulating more rewards
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(3 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{})
|
|
|
|
suite.keeper.SynchronizeHardDelegatorRewards(suite.ctx, suite.addrs[0], nil, false)
|
|
|
|
// rewards are the same as before
|
|
laterClaim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(claim.Reward, laterClaim.Reward)
|
|
|
|
// claim index has been updated to latest global value
|
|
laterClaimIndex, found := laterClaim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.Require().True(found)
|
|
globalIndex, found = suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(globalIndex, laterClaimIndex.RewardFactor)
|
|
}
|
|
|
|
// given a user has a delegation to an unbonded validator, when the validator becomes bonded, the user starts accumulating rewards
|
|
func (suite *KeeperTestSuite) TestBondingValidatorSyncsClaim() {
|
|
suite.SetupWithGenState()
|
|
initialTime := time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC)
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime)
|
|
blockDuration := 10 * time.Second
|
|
|
|
// Setup incentive state
|
|
rewardsPerSecond := c("hard", 122354)
|
|
bondDenom := "ukava"
|
|
params := types.NewParams(
|
|
nil,
|
|
nil,
|
|
nil,
|
|
types.RewardPeriods{
|
|
types.NewRewardPeriod(true, bondDenom, initialTime.Add(-1*oneYear), initialTime.Add(4*oneYear), rewardsPerSecond),
|
|
},
|
|
types.DefaultMultipliers,
|
|
initialTime.Add(5*oneYear),
|
|
)
|
|
suite.keeper.SetParams(suite.ctx, params)
|
|
suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, bondDenom, initialTime)
|
|
suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, bondDenom, sdk.ZeroDec())
|
|
|
|
// Reduce the size of the validator set
|
|
stakingParams := suite.app.GetStakingKeeper().GetParams(suite.ctx)
|
|
stakingParams.MaxValidators = 2
|
|
suite.app.GetStakingKeeper().SetParams(suite.ctx, stakingParams)
|
|
|
|
// Create 3 validators
|
|
err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], c(bondDenom, 10_000_000))
|
|
suite.Require().NoError(err)
|
|
err = suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[1], c(bondDenom, 5_000_000))
|
|
suite.Require().NoError(err)
|
|
err = suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[2], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// End the block so top validators become bonded
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(1 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{}) // height and time in header are ignored by module begin blockers
|
|
|
|
// Delegate to an unbonded validator from the test user. This will initialize their incentive claim.
|
|
err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[2], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// Start a new block to accumulate some delegation rewards globally.
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(2 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{})
|
|
|
|
// Delegate to the user's unbonded validator to push it into the bonded validator set
|
|
err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[2], suite.validatorAddrs[2], c(bondDenom, 4_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// End the block to bond the user's validator
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
// but don't start the next block as it will accumulate delegator rewards and we won't be able to tell if the user's reward was synced.
|
|
|
|
// Check that the user's claim has been synced. ie rewards added, index updated
|
|
claim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.Require().True(found)
|
|
|
|
globalIndex, found := suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.Require().True(found)
|
|
claimIndex, found := claim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(globalIndex, claimIndex.RewardFactor)
|
|
|
|
suite.Require().Equal(
|
|
sdk.Coins(nil),
|
|
claim.Reward,
|
|
)
|
|
|
|
// Run another block and check the claim is accumulating more rewards
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(3 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{})
|
|
|
|
suite.keeper.SynchronizeHardDelegatorRewards(suite.ctx, suite.addrs[0], nil, false)
|
|
|
|
// rewards are greater than before
|
|
laterClaim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.Require().True(found)
|
|
suite.Require().True(laterClaim.Reward.IsAllGT(claim.Reward))
|
|
|
|
// claim index has been updated to latest global value
|
|
laterClaimIndex, found := laterClaim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.Require().True(found)
|
|
globalIndex, found = suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(globalIndex, laterClaimIndex.RewardFactor)
|
|
}
|
|
|
|
// If a validator is slashed delegators should have their claims synced
|
|
func (suite *KeeperTestSuite) TestSlashingValidatorSyncsClaim() {
|
|
suite.SetupWithGenState()
|
|
initialTime := time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC)
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime)
|
|
blockDuration := 10 * time.Second
|
|
|
|
// Setup incentive state
|
|
rewardsPerSecond := c("hard", 122354)
|
|
bondDenom := "ukava"
|
|
params := types.NewParams(
|
|
nil,
|
|
nil,
|
|
nil,
|
|
types.RewardPeriods{
|
|
types.NewRewardPeriod(true, bondDenom, initialTime.Add(-1*oneYear), initialTime.Add(4*oneYear), rewardsPerSecond),
|
|
},
|
|
types.DefaultMultipliers,
|
|
initialTime.Add(5*oneYear),
|
|
)
|
|
suite.keeper.SetParams(suite.ctx, params)
|
|
suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, bondDenom, initialTime.Add(-1*blockDuration))
|
|
suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, bondDenom, sdk.ZeroDec())
|
|
|
|
// Reduce the size of the validator set
|
|
stakingParams := suite.app.GetStakingKeeper().GetParams(suite.ctx)
|
|
stakingParams.MaxValidators = 2
|
|
suite.app.GetStakingKeeper().SetParams(suite.ctx, stakingParams)
|
|
|
|
// Create 2 validators
|
|
err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], c(bondDenom, 10_000_000))
|
|
suite.Require().NoError(err)
|
|
err = suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[1], c(bondDenom, 10_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// End the block so validators become bonded
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(1 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{}) // height and time in header are ignored by module begin blockers
|
|
|
|
// Delegate to a bonded validator from the test user. This will initialize their incentive claim.
|
|
err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[1], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// Check that claim has been created with synced reward index but no reward coins
|
|
initialClaim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.True(found)
|
|
initialGlobalIndex, found := suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.True(found)
|
|
initialClaimIndex, found := initialClaim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.True(found)
|
|
suite.Require().Equal(initialGlobalIndex, initialClaimIndex.RewardFactor)
|
|
suite.True(initialClaim.Reward.Empty()) // Initial claim should not have any rewards
|
|
|
|
// Start a new block to accumulate some delegation rewards for the user.
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(2 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{}) // height and time in header are ignored by module begin blockers
|
|
|
|
// Fetch validator and slash them
|
|
stakingKeeper := suite.app.GetStakingKeeper()
|
|
validator, found := stakingKeeper.GetValidator(suite.ctx, suite.validatorAddrs[1])
|
|
suite.Require().True(found)
|
|
suite.Require().True(validator.GetTokens().IsPositive())
|
|
fraction := sdk.NewDecWithPrec(5, 1)
|
|
stakingKeeper.Slash(suite.ctx, validator.ConsAddress(), suite.ctx.BlockHeight(), 10, fraction)
|
|
|
|
// Check that the user's claim has been synced. ie rewards added, index updated
|
|
claim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.Require().True(found)
|
|
globalIndex, found := suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.Require().True(found)
|
|
claimIndex, found := claim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(globalIndex, claimIndex.RewardFactor)
|
|
|
|
// Check that rewards were added
|
|
suite.Require().Equal(
|
|
cs(c(rewardsPerSecond.Denom, 58264)),
|
|
claim.Reward,
|
|
)
|
|
|
|
// Check that reward factor increased from initial value
|
|
suite.True(claimIndex.RewardFactor.GT(initialClaimIndex.RewardFactor))
|
|
}
|
|
|
|
// Given a delegation to a bonded validator, when a user redelegates everything to another (bonded) validator, the user's claim is synced
|
|
func (suite *KeeperTestSuite) TestRedelegationSyncsClaim() {
|
|
suite.SetupWithGenState()
|
|
initialTime := time.Date(2020, 12, 15, 14, 0, 0, 0, time.UTC)
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime)
|
|
blockDuration := 10 * time.Second
|
|
|
|
// Setup incentive state
|
|
rewardsPerSecond := c("hard", 122354)
|
|
bondDenom := "ukava"
|
|
params := types.NewParams(
|
|
nil,
|
|
nil,
|
|
nil,
|
|
types.RewardPeriods{
|
|
types.NewRewardPeriod(true, bondDenom, initialTime.Add(-1*oneYear), initialTime.Add(4*oneYear), rewardsPerSecond),
|
|
},
|
|
types.DefaultMultipliers,
|
|
initialTime.Add(5*oneYear),
|
|
)
|
|
suite.keeper.SetParams(suite.ctx, params)
|
|
suite.keeper.SetPreviousHardDelegatorRewardAccrualTime(suite.ctx, bondDenom, initialTime)
|
|
suite.keeper.SetHardDelegatorRewardFactor(suite.ctx, bondDenom, sdk.ZeroDec())
|
|
|
|
// Create 2 validators
|
|
err := suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[0], c(bondDenom, 10_000_000))
|
|
suite.Require().NoError(err)
|
|
err = suite.deliverMsgCreateValidator(suite.ctx, suite.validatorAddrs[1], c(bondDenom, 5_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// Delegatefrom the test user. This will initialize their incentive claim.
|
|
err = suite.deliverMsgDelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[0], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// Start a new block to accumulate some delegation rewards globally.
|
|
_ = suite.app.EndBlocker(suite.ctx, abci.RequestEndBlock{})
|
|
suite.ctx = suite.ctx.WithBlockTime(initialTime.Add(1 * blockDuration))
|
|
_ = suite.app.BeginBlocker(suite.ctx, abci.RequestBeginBlock{}) // height and time in header are ignored by module begin blockers
|
|
|
|
// Redelegate the user's delegation between the two validators. This should trigger hooks that sync the user's claim.
|
|
err = suite.deliverMsgRedelegate(suite.ctx, suite.addrs[0], suite.validatorAddrs[0], suite.validatorAddrs[1], c(bondDenom, 1_000_000))
|
|
suite.Require().NoError(err)
|
|
|
|
// Check that the user's claim has been synced. ie rewards added, index updated
|
|
claim, found := suite.keeper.GetHardLiquidityProviderClaim(suite.ctx, suite.addrs[0])
|
|
suite.Require().True(found)
|
|
|
|
globalIndex, found := suite.keeper.GetHardDelegatorRewardFactor(suite.ctx, bondDenom)
|
|
suite.Require().True(found)
|
|
claimIndex, found := claim.DelegatorRewardIndexes.GetRewardIndex(bondDenom)
|
|
suite.Require().True(found)
|
|
suite.Require().Equal(globalIndex, claimIndex.RewardFactor)
|
|
suite.Require().Equal(
|
|
cs(c(rewardsPerSecond.Denom, 76471)),
|
|
claim.Reward,
|
|
)
|
|
}
|