cosmos-sdk/x/stake/simulation/invariants.go

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package simulation
import (
"fmt"
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"github.com/cosmos/cosmos-sdk/baseapp"
sdk "github.com/cosmos/cosmos-sdk/types"
"github.com/cosmos/cosmos-sdk/x/auth"
"github.com/cosmos/cosmos-sdk/x/bank"
"github.com/cosmos/cosmos-sdk/x/distribution"
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"github.com/cosmos/cosmos-sdk/x/mock/simulation"
"github.com/cosmos/cosmos-sdk/x/stake"
abci "github.com/tendermint/tendermint/abci/types"
)
// AllInvariants runs all invariants of the stake module.
// Currently: total supply, positive power
func AllInvariants(ck bank.Keeper, k stake.Keeper, f auth.FeeCollectionKeeper, d distribution.Keeper, am auth.AccountKeeper) simulation.Invariant {
return func(app *baseapp.BaseApp) error {
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err := SupplyInvariants(ck, k, f, d, am)(app)
if err != nil {
return err
}
err = PositivePowerInvariant(k)(app)
if err != nil {
return err
}
err = ValidatorSetInvariant(k)(app)
return err
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}
}
// SupplyInvariants checks that the total supply reflects all held loose tokens, bonded tokens, and unbonding delegations
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// nolint: unparam
func SupplyInvariants(ck bank.Keeper, k stake.Keeper, f auth.FeeCollectionKeeper, d distribution.Keeper, am auth.AccountKeeper) simulation.Invariant {
return func(app *baseapp.BaseApp) error {
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ctx := app.NewContext(false, abci.Header{})
pool := k.GetPool(ctx)
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loose := sdk.ZeroDec()
bonded := sdk.ZeroDec()
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am.IterateAccounts(ctx, func(acc auth.Account) bool {
loose = loose.Add(sdk.NewDecFromInt(acc.GetCoins().AmountOf("steak")))
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return false
})
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k.IterateUnbondingDelegations(ctx, func(_ int64, ubd stake.UnbondingDelegation) bool {
loose = loose.Add(sdk.NewDecFromInt(ubd.Balance.Amount))
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return false
})
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k.IterateValidators(ctx, func(_ int64, validator sdk.Validator) bool {
switch validator.GetStatus() {
case sdk.Bonded:
bonded = bonded.Add(validator.GetPower())
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case sdk.Unbonding:
loose = loose.Add(validator.GetTokens())
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case sdk.Unbonded:
loose = loose.Add(validator.GetTokens())
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}
return false
})
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feePool := d.GetFeePool(ctx)
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// add outstanding fees
loose = loose.Add(sdk.NewDecFromInt(f.GetCollectedFees(ctx).AmountOf("steak")))
// add community pool
loose = loose.Add(feePool.CommunityPool.AmountOf("steak"))
// add validator distribution pool
loose = loose.Add(feePool.ValPool.AmountOf("steak"))
// add validator distribution commission and yet-to-be-withdrawn-by-delegators
d.IterateValidatorDistInfos(ctx, func(_ int64, distInfo distribution.ValidatorDistInfo) (stop bool) {
loose = loose.Add(distInfo.ValCommission.AmountOf("steak"))
loose = loose.Add(distInfo.DelPool.AmountOf("steak"))
return false
})
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// Loose tokens should equal coin supply plus unbonding delegations plus tokens on unbonded validators
if !pool.LooseTokens.Equal(loose) {
return fmt.Errorf("expected loose tokens to equal total steak held by accounts - pool.LooseTokens: %v, sum of account tokens: %v", pool.LooseTokens, loose)
}
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// Bonded tokens should equal sum of tokens with bonded validators
if !pool.BondedTokens.Equal(bonded) {
return fmt.Errorf("expected bonded tokens to equal total steak held by bonded validators - pool.BondedTokens: %v, sum of bonded validator tokens: %v", pool.BondedTokens, bonded)
}
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return nil
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}
}
// PositivePowerInvariant checks that all stored validators have > 0 power
func PositivePowerInvariant(k stake.Keeper) simulation.Invariant {
return func(app *baseapp.BaseApp) error {
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ctx := app.NewContext(false, abci.Header{})
var err error
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k.IterateValidatorsBonded(ctx, func(_ int64, validator sdk.Validator) bool {
if !validator.GetPower().GT(sdk.ZeroDec()) {
err = fmt.Errorf("validator with non-positive power stored. (pubkey %v)", validator.GetConsPubKey())
return true
}
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return false
})
return err
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}
}
// ValidatorSetInvariant checks equivalence of Tendermint validator set and SDK validator set
func ValidatorSetInvariant(k stake.Keeper) simulation.Invariant {
return func(app *baseapp.BaseApp) error {
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// TODO
return nil
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}
}