mirror of
https://github.com/0glabs/0g-chain.git
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280 lines
8.9 KiB
Go
280 lines
8.9 KiB
Go
package keeper
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import (
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"fmt"
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errorsmod "cosmossdk.io/errors"
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sdkmath "cosmossdk.io/math"
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sdk "github.com/cosmos/cosmos-sdk/types"
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sdkerrors "github.com/cosmos/cosmos-sdk/types/errors"
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evmtypes "github.com/evmos/ethermint/x/evm/types"
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"github.com/0glabs/0g-chain/x/evmutil/types"
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)
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const (
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// EvmDenom is the gas denom used by the evm
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EvmDenom = "neuron"
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// CosmosDenom is the gas denom used by the 0g-chain app
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CosmosDenom = "ua0gi"
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)
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// ConversionMultiplier is the conversion multiplier between neuron and ua0gi
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var ConversionMultiplier = sdkmath.NewInt(1_000_000_000_000)
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var _ evmtypes.BankKeeper = EvmBankKeeper{}
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// EvmBankKeeper is a BankKeeper wrapper for the x/evm module to allow the use
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// of the 18 decimal neuron coin on the evm.
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// x/evm consumes gas and send coins by minting and burning neuron coins in its module
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// account and then sending the funds to the target account.
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// This keeper uses both the a0gi coin and a separate neuron balance to manage the
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// extra percision needed by the evm.
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type EvmBankKeeper struct {
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neuronKeeper Keeper
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bk types.BankKeeper
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ak types.AccountKeeper
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}
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func NewEvmBankKeeper(neuronKeeper Keeper, bk types.BankKeeper, ak types.AccountKeeper) EvmBankKeeper {
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return EvmBankKeeper{
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neuronKeeper: neuronKeeper,
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bk: bk,
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ak: ak,
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}
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}
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// GetBalance returns the total **spendable** balance of neuron for a given account by address.
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func (k EvmBankKeeper) GetBalance(ctx sdk.Context, addr sdk.AccAddress, denom string) sdk.Coin {
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if denom != EvmDenom {
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panic(fmt.Errorf("only evm denom %s is supported by EvmBankKeeper", EvmDenom))
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}
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spendableCoins := k.bk.SpendableCoins(ctx, addr)
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cosmosDenomFromBank := spendableCoins.AmountOf(CosmosDenom)
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evmDenomFromBank := spendableCoins.AmountOf(EvmDenom)
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evmDenomFromEvmBank := k.neuronKeeper.GetBalance(ctx, addr)
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var total sdkmath.Int
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if cosmosDenomFromBank.IsPositive() {
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total = cosmosDenomFromBank.Mul(ConversionMultiplier).Add(evmDenomFromBank).Add(evmDenomFromEvmBank)
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} else {
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total = evmDenomFromBank.Add(evmDenomFromEvmBank)
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}
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return sdk.NewCoin(EvmDenom, total)
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}
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// SendCoins transfers neuron coins from a AccAddress to an AccAddress.
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func (k EvmBankKeeper) SendCoins(ctx sdk.Context, senderAddr sdk.AccAddress, recipientAddr sdk.AccAddress, amt sdk.Coins) error {
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// SendCoins method is not used by the evm module, but is required by the
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// evmtypes.BankKeeper interface. This must be updated if the evm module
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// is updated to use SendCoins.
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panic("not implemented")
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}
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// SendCoinsFromModuleToAccount transfers neuron coins from a ModuleAccount to an AccAddress.
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// It will panic if the module account does not exist. An error is returned if the recipient
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// address is black-listed or if sending the tokens fails.
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func (k EvmBankKeeper) SendCoinsFromModuleToAccount(ctx sdk.Context, senderModule string, recipientAddr sdk.AccAddress, amt sdk.Coins) error {
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ua0gi, neuron, err := SplitNeuronCoins(amt)
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if err != nil {
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return err
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}
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if ua0gi.Amount.IsPositive() {
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if err := k.bk.SendCoinsFromModuleToAccount(ctx, senderModule, recipientAddr, sdk.NewCoins(ua0gi)); err != nil {
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return err
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}
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}
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senderAddr := k.GetModuleAddress(senderModule)
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if err := k.ConvertOneUa0giToNeuronIfNeeded(ctx, senderAddr, neuron); err != nil {
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return err
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}
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if err := k.neuronKeeper.SendBalance(ctx, senderAddr, recipientAddr, neuron); err != nil {
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return err
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}
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return k.ConvertNeuronToUa0gi(ctx, recipientAddr)
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}
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// SendCoinsFromAccountToModule transfers neuron coins from an AccAddress to a ModuleAccount.
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// It will panic if the module account does not exist.
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func (k EvmBankKeeper) SendCoinsFromAccountToModule(ctx sdk.Context, senderAddr sdk.AccAddress, recipientModule string, amt sdk.Coins) error {
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ua0gi, neuronNeeded, err := SplitNeuronCoins(amt)
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if err != nil {
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return err
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}
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if ua0gi.IsPositive() {
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if err := k.bk.SendCoinsFromAccountToModule(ctx, senderAddr, recipientModule, sdk.NewCoins(ua0gi)); err != nil {
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return err
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}
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}
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if err := k.ConvertOneUa0giToNeuronIfNeeded(ctx, senderAddr, neuronNeeded); err != nil {
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return err
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}
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recipientAddr := k.GetModuleAddress(recipientModule)
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if err := k.neuronKeeper.SendBalance(ctx, senderAddr, recipientAddr, neuronNeeded); err != nil {
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return err
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}
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return k.ConvertNeuronToUa0gi(ctx, recipientAddr)
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}
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// MintCoins mints neuron coins by minting the equivalent a0gi coins and any remaining neuron coins.
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// It will panic if the module account does not exist or is unauthorized.
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func (k EvmBankKeeper) MintCoins(ctx sdk.Context, moduleName string, amt sdk.Coins) error {
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ua0gi, neuron, err := SplitNeuronCoins(amt)
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if err != nil {
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return err
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}
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if ua0gi.IsPositive() {
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if err := k.bk.MintCoins(ctx, moduleName, sdk.NewCoins(ua0gi)); err != nil {
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return err
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}
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}
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recipientAddr := k.GetModuleAddress(moduleName)
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if err := k.neuronKeeper.AddBalance(ctx, recipientAddr, neuron); err != nil {
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return err
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}
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return k.ConvertNeuronToUa0gi(ctx, recipientAddr)
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}
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// BurnCoins burns neuron coins by burning the equivalent a0gi coins and any remaining neuron coins.
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// It will panic if the module account does not exist or is unauthorized.
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func (k EvmBankKeeper) BurnCoins(ctx sdk.Context, moduleName string, amt sdk.Coins) error {
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ua0gi, neuron, err := SplitNeuronCoins(amt)
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if err != nil {
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return err
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}
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if ua0gi.IsPositive() {
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if err := k.bk.BurnCoins(ctx, moduleName, sdk.NewCoins(ua0gi)); err != nil {
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return err
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}
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}
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moduleAddr := k.GetModuleAddress(moduleName)
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if err := k.ConvertOneUa0giToNeuronIfNeeded(ctx, moduleAddr, neuron); err != nil {
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return err
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}
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return k.neuronKeeper.RemoveBalance(ctx, moduleAddr, neuron)
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}
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// ConvertOneUa0giToNeuronIfNeeded converts 1 a0gi to neuron for an address if
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// its neuron balance is smaller than the neuronNeeded amount.
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func (k EvmBankKeeper) ConvertOneUa0giToNeuronIfNeeded(ctx sdk.Context, addr sdk.AccAddress, neuronNeeded sdkmath.Int) error {
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neuronBal := k.neuronKeeper.GetBalance(ctx, addr)
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if neuronBal.GTE(neuronNeeded) {
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return nil
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}
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ua0giToStore := sdk.NewCoins(sdk.NewCoin(CosmosDenom, sdk.OneInt()))
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if err := k.bk.SendCoinsFromAccountToModule(ctx, addr, types.ModuleName, ua0giToStore); err != nil {
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return err
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}
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// add 1a0gi equivalent of neuron to addr
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neuronToReceive := ConversionMultiplier
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if err := k.neuronKeeper.AddBalance(ctx, addr, neuronToReceive); 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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// ConvertNeuronToA0gi converts all available neuron to a0gi for a given AccAddress.
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func (k EvmBankKeeper) ConvertNeuronToUa0gi(ctx sdk.Context, addr sdk.AccAddress) error {
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totalNeuron := k.neuronKeeper.GetBalance(ctx, addr)
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ua0gi, _, err := SplitNeuronCoins(sdk.NewCoins(sdk.NewCoin(EvmDenom, totalNeuron)))
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if err != nil {
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return err
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}
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// do nothing if account does not have enough neuron for a single a0gi
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ua0giToReceive := ua0gi.Amount
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if !ua0giToReceive.IsPositive() {
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return nil
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}
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// remove neuron used for converting to ua0gi
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neuronToBurn := ua0giToReceive.Mul(ConversionMultiplier)
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finalBal := totalNeuron.Sub(neuronToBurn)
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if err := k.neuronKeeper.SetBalance(ctx, addr, finalBal); err != nil {
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return err
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}
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fromAddr := k.GetModuleAddress(types.ModuleName)
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if err := k.bk.SendCoins(ctx, fromAddr, addr, sdk.NewCoins(ua0gi)); 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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func (k EvmBankKeeper) GetModuleAddress(moduleName string) sdk.AccAddress {
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addr := k.ak.GetModuleAddress(moduleName)
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if addr == nil {
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panic(errorsmod.Wrapf(sdkerrors.ErrUnknownAddress, "module account %s does not exist", moduleName))
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}
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return addr
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}
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// SplitNeuronCoins splits neuron coins to the equivalent a0gi coins and any remaining neuron balance.
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// An error will be returned if the coins are not valid or if the coins are not the neuron denom.
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func SplitNeuronCoins(coins sdk.Coins) (sdk.Coin, sdkmath.Int, error) {
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neuron := sdk.ZeroInt()
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ua0gi := sdk.NewCoin(CosmosDenom, sdk.ZeroInt())
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if len(coins) == 0 {
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return ua0gi, neuron, nil
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}
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if err := ValidateEvmCoins(coins); err != nil {
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return ua0gi, neuron, err
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}
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// note: we should always have len(coins) == 1 here since coins cannot have dup denoms after we validate.
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coin := coins[0]
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remainingBalance := coin.Amount.Mod(ConversionMultiplier)
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if remainingBalance.IsPositive() {
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neuron = remainingBalance
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}
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ua0giAmount := coin.Amount.Quo(ConversionMultiplier)
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if ua0giAmount.IsPositive() {
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ua0gi = sdk.NewCoin(CosmosDenom, ua0giAmount)
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}
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return ua0gi, neuron, nil
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}
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// ValidateEvmCoins validates the coins from evm is valid and is the EvmDenom (neuron).
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func ValidateEvmCoins(coins sdk.Coins) error {
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if len(coins) == 0 {
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return nil
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}
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// validate that coins are non-negative, sorted, and no dup denoms
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if err := coins.Validate(); err != nil {
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return errorsmod.Wrap(sdkerrors.ErrInvalidCoins, coins.String())
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}
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// validate that coin denom is neuron
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if len(coins) != 1 || coins[0].Denom != EvmDenom {
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errMsg := fmt.Sprintf("invalid evm coin denom, only %s is supported", EvmDenom)
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return errorsmod.Wrap(sdkerrors.ErrInvalidCoins, errMsg)
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}
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return nil
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}
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