mirror of
https://github.com/0glabs/0g-chain.git
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246 lines
8.1 KiB
Go
246 lines
8.1 KiB
Go
package app
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import (
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sdkmath "cosmossdk.io/math"
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sdk "github.com/cosmos/cosmos-sdk/types"
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bankkeeper "github.com/cosmos/cosmos-sdk/x/bank/keeper"
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govkeeper "github.com/cosmos/cosmos-sdk/x/gov/keeper"
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govv1 "github.com/cosmos/cosmos-sdk/x/gov/types/v1"
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stakingkeeper "github.com/cosmos/cosmos-sdk/x/staking/keeper"
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stakingtypes "github.com/cosmos/cosmos-sdk/x/staking/types"
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)
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var _ govv1.TallyHandler = TallyHandler{}
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// TallyHandler is the tally handler for kava
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type TallyHandler struct {
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gk govkeeper.Keeper
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stk stakingkeeper.Keeper
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bk bankkeeper.Keeper
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}
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// NewTallyHandler creates a new tally handler.
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func NewTallyHandler(
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gk govkeeper.Keeper, stk stakingkeeper.Keeper, bk bankkeeper.Keeper,
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) TallyHandler {
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return TallyHandler{
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gk: gk,
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stk: stk,
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bk: bk,
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}
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}
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func (th TallyHandler) Tally(
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ctx sdk.Context,
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proposal govv1.Proposal,
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) (passes bool, burnDeposits bool, tallyResults govv1.TallyResult) {
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results := make(map[govv1.VoteOption]sdk.Dec)
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results[govv1.OptionYes] = sdk.ZeroDec()
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results[govv1.OptionAbstain] = sdk.ZeroDec()
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results[govv1.OptionNo] = sdk.ZeroDec()
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results[govv1.OptionNoWithVeto] = sdk.ZeroDec()
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totalVotingPower := sdk.ZeroDec()
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currValidators := make(map[string]govv1.ValidatorGovInfo)
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// fetch all the bonded validators, insert them into currValidators
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th.stk.IterateBondedValidatorsByPower(ctx, func(index int64, validator stakingtypes.ValidatorI) (stop bool) {
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currValidators[validator.GetOperator().String()] = govv1.NewValidatorGovInfo(
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validator.GetOperator(),
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validator.GetBondedTokens(),
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validator.GetDelegatorShares(),
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sdk.ZeroDec(),
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govv1.WeightedVoteOptions{},
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)
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return false
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})
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th.gk.IterateVotes(ctx, proposal.Id, func(vote govv1.Vote) bool {
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// if validator, just record it in the map
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voter, err := sdk.AccAddressFromBech32(vote.Voter)
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if err != nil {
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panic(err)
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}
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valAddrStr := sdk.ValAddress(voter.Bytes()).String()
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if val, ok := currValidators[valAddrStr]; ok {
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val.Vote = vote.Options
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currValidators[valAddrStr] = val
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}
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// iterate over all delegations from voter, deduct from any delegated-to validators
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th.stk.IterateDelegations(ctx, voter, func(index int64, delegation stakingtypes.DelegationI) (stop bool) {
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valAddrStr := delegation.GetValidatorAddr().String()
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if val, ok := currValidators[valAddrStr]; ok {
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// There is no need to handle the special case that validator address equal to voter address.
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// Because voter's voting power will tally again even if there will deduct voter's voting power from validator.
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val.DelegatorDeductions = val.DelegatorDeductions.Add(delegation.GetShares())
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currValidators[valAddrStr] = val
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// delegation shares * bonded / total shares
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votingPower := delegation.GetShares().MulInt(val.BondedTokens).Quo(val.DelegatorShares)
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for _, option := range vote.Options {
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subPower := votingPower.Mul(sdk.MustNewDecFromStr(option.Weight))
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results[option.Option] = results[option.Option].Add(subPower)
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}
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totalVotingPower = totalVotingPower.Add(votingPower)
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}
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return false
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})
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// get voter bkava and update total voting power and results
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// addrBkava := th.getAddrBkava(ctx, voter).toCoins()
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// for _, coin := range addrBkava {
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// valAddr, err := liquidtypes.ParseLiquidStakingTokenDenom(coin.Denom)
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// if err != nil {
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// break
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// }
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// // reduce delegator shares by the amount of voter bkava for the validator
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// valAddrStr := valAddr.String()
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// if val, ok := currValidators[valAddrStr]; ok {
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// val.DelegatorDeductions = val.DelegatorDeductions.Add(sdk.NewDecFromInt(coin.Amount))
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// currValidators[valAddrStr] = val
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// }
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// // votingPower = amount of ukava coin
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// stakedCoins, err := th.lk.GetStakedTokensForDerivatives(ctx, sdk.NewCoins(coin))
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// if err != nil {
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// // error is returned only if the bkava denom is incorrect, which should never happen here.
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// panic(err)
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// }
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// votingPower := sdk.NewDecFromInt(stakedCoins.Amount)
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// for _, option := range vote.Options {
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// subPower := votingPower.Mul(sdk.MustNewDecFromStr(option.Weight))
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// results[option.Option] = results[option.Option].Add(subPower)
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// }
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// totalVotingPower = totalVotingPower.Add(votingPower)
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// }
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th.gk.DeleteVote(ctx, vote.ProposalId, voter)
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return false
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})
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// iterate over the validators again to tally their voting power
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for _, val := range currValidators {
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if len(val.Vote) == 0 {
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continue
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}
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sharesAfterDeductions := val.DelegatorShares.Sub(val.DelegatorDeductions)
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votingPower := sharesAfterDeductions.MulInt(val.BondedTokens).Quo(val.DelegatorShares)
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for _, option := range val.Vote {
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subPower := votingPower.Mul(sdk.MustNewDecFromStr(option.Weight))
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results[option.Option] = results[option.Option].Add(subPower)
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}
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totalVotingPower = totalVotingPower.Add(votingPower)
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}
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tallyParams := th.gk.GetTallyParams(ctx)
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tallyResults = govv1.NewTallyResultFromMap(results)
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// TODO: Upgrade the spec to cover all of these cases & remove pseudocode.
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// If there is no staked coins, the proposal fails
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if th.stk.TotalBondedTokens(ctx).IsZero() {
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return false, false, tallyResults
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}
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// If there is not enough quorum of votes, the proposal fails
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percentVoting := totalVotingPower.Quo(sdk.NewDecFromInt(th.stk.TotalBondedTokens(ctx)))
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if percentVoting.LT(sdk.MustNewDecFromStr(tallyParams.Quorum)) {
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return false, true, tallyResults
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}
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// If no one votes (everyone abstains), proposal fails
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if totalVotingPower.Sub(results[govv1.OptionAbstain]).Equal(sdk.ZeroDec()) {
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return false, false, tallyResults
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}
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// If more than 1/3 of voters veto, proposal fails
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if results[govv1.OptionNoWithVeto].Quo(totalVotingPower).GT(sdk.MustNewDecFromStr(tallyParams.VetoThreshold)) {
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return false, true, tallyResults
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}
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// If more than 1/2 of non-abstaining voters vote Yes, proposal passes
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if results[govv1.OptionYes].Quo(totalVotingPower.Sub(results[govv1.OptionAbstain])).GT(sdk.MustNewDecFromStr(tallyParams.Threshold)) {
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return true, false, tallyResults
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}
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// If more than 1/2 of non-abstaining voters vote No, proposal fails
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return false, false, tallyResults
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}
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// bkavaByDenom a map of the bkava denom and the amount of bkava for that denom.
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type bkavaByDenom map[string]sdkmath.Int
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func (bkavaMap bkavaByDenom) add(coin sdk.Coin) {
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_, found := bkavaMap[coin.Denom]
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if !found {
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bkavaMap[coin.Denom] = sdk.ZeroInt()
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}
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bkavaMap[coin.Denom] = bkavaMap[coin.Denom].Add(coin.Amount)
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}
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func (bkavaMap bkavaByDenom) toCoins() sdk.Coins {
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coins := sdk.Coins{}
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for denom, amt := range bkavaMap {
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coins = coins.Add(sdk.NewCoin(denom, amt))
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}
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return coins.Sort()
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}
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// getAddrBkava returns a map of validator address & the amount of bkava
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// of the addr for each validator.
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func (th TallyHandler) getAddrBkava(ctx sdk.Context, addr sdk.AccAddress) bkavaByDenom {
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results := make(bkavaByDenom)
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th.addBkavaFromWallet(ctx, addr, results)
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th.addBkavaFromSavings(ctx, addr, results)
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th.addBkavaFromEarn(ctx, addr, results)
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return results
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}
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// addBkavaFromWallet adds all addr balances of bkava in x/bank.
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func (th TallyHandler) addBkavaFromWallet(ctx sdk.Context, addr sdk.AccAddress, bkava bkavaByDenom) {
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// coins := th.bk.GetAllBalances(ctx, addr)
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// for _, coin := range coins {
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// if th.lk.IsDerivativeDenom(ctx, coin.Denom) {
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// bkava.add(coin)
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// }
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// }
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}
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// addBkavaFromSavings adds all addr deposits of bkava in x/savings.
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func (th TallyHandler) addBkavaFromSavings(ctx sdk.Context, addr sdk.AccAddress, bkava bkavaByDenom) {
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// deposit, found := th.svk.GetDeposit(ctx, addr)
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// if !found {
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// return
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// }
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// for _, coin := range deposit.Amount {
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// if th.lk.IsDerivativeDenom(ctx, coin.Denom) {
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// bkava.add(coin)
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// }
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// }
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}
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// addBkavaFromEarn adds all addr deposits of bkava in x/earn.
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func (th TallyHandler) addBkavaFromEarn(ctx sdk.Context, addr sdk.AccAddress, bkava bkavaByDenom) {
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// shares, found := th.ek.GetVaultAccountShares(ctx, addr)
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// if !found {
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// return
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// }
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// for _, share := range shares {
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// if th.lk.IsDerivativeDenom(ctx, share.Denom) {
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// if coin, err := th.ek.ConvertToAssets(ctx, share); err == nil {
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// bkava.add(coin)
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// }
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// }
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// }
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}
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