mirror of
https://github.com/0glabs/0g-chain.git
synced 2024-12-26 00:05:18 +00:00
142 lines
5.2 KiB
Go
142 lines
5.2 KiB
Go
package bep3
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import (
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"fmt"
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sdk "github.com/cosmos/cosmos-sdk/types"
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authtypes "github.com/cosmos/cosmos-sdk/x/auth/types"
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"github.com/0glabs/0g-chain/x/bep3/keeper"
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"github.com/0glabs/0g-chain/x/bep3/types"
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)
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// InitGenesis initializes the store state from a genesis state.
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func InitGenesis(ctx sdk.Context, keeper keeper.Keeper, accountKeeper types.AccountKeeper, gs *types.GenesisState) {
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// Check if the module account exists
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moduleAcc := accountKeeper.GetModuleAccount(ctx, types.ModuleName)
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if moduleAcc == nil {
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panic(fmt.Sprintf("%s module account has not been set", types.ModuleName))
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}
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hasBurnPermissions := false
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hasMintPermissions := false
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for _, perm := range moduleAcc.GetPermissions() {
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if perm == authtypes.Burner {
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hasBurnPermissions = true
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}
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if perm == authtypes.Minter {
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hasMintPermissions = true
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}
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}
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if !hasBurnPermissions {
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panic(fmt.Sprintf("%s module account does not have burn permissions", types.ModuleName))
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}
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if !hasMintPermissions {
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panic(fmt.Sprintf("%s module account does not have mint permissions", types.ModuleName))
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}
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if err := gs.Validate(); err != nil {
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panic(fmt.Sprintf("failed to validate %s genesis state: %s", types.ModuleName, err))
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}
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keeper.SetPreviousBlockTime(ctx, gs.PreviousBlockTime)
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keeper.SetParams(ctx, gs.Params)
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for _, supply := range gs.Supplies {
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keeper.SetAssetSupply(ctx, supply, supply.GetDenom())
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}
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var incomingSupplies sdk.Coins
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var outgoingSupplies sdk.Coins
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for _, swap := range gs.AtomicSwaps {
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if swap.Validate() != nil {
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panic(fmt.Sprintf("invalid swap %s", swap.GetSwapID()))
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}
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// Atomic swap assets must be both supported and active
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err := keeper.ValidateLiveAsset(ctx, swap.Amount[0])
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if err != nil {
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panic(fmt.Sprintf("swap has invalid asset: %s", err))
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}
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keeper.SetAtomicSwap(ctx, swap)
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// Add swap to block index or longterm storage based on swap.Status
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// Increment incoming or outgoing supply based on swap.Direction
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switch swap.Direction {
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case types.SWAP_DIRECTION_INCOMING:
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switch swap.Status {
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case types.SWAP_STATUS_OPEN:
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// This index expires unclaimed swaps
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keeper.InsertIntoByBlockIndex(ctx, swap)
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incomingSupplies = incomingSupplies.Add(swap.Amount...)
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case types.SWAP_STATUS_EXPIRED:
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incomingSupplies = incomingSupplies.Add(swap.Amount...)
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case types.SWAP_STATUS_COMPLETED:
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// This index stores swaps until deletion
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keeper.InsertIntoLongtermStorage(ctx, swap)
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default:
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panic(fmt.Sprintf("swap %s has invalid status %s", swap.GetSwapID(), swap.Status.String()))
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}
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case types.SWAP_DIRECTION_OUTGOING:
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switch swap.Status {
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case types.SWAP_STATUS_OPEN:
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keeper.InsertIntoByBlockIndex(ctx, swap)
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outgoingSupplies = outgoingSupplies.Add(swap.Amount...)
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case types.SWAP_STATUS_EXPIRED:
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outgoingSupplies = outgoingSupplies.Add(swap.Amount...)
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case types.SWAP_STATUS_COMPLETED:
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keeper.InsertIntoLongtermStorage(ctx, swap)
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default:
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panic(fmt.Sprintf("swap %s has invalid status %s", swap.GetSwapID(), swap.Status.String()))
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}
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default:
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panic(fmt.Sprintf("swap %s has invalid direction %s", swap.GetSwapID(), swap.Direction.String()))
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}
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}
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// Asset's given incoming/outgoing supply much match the amount of coins in incoming/outgoing atomic swaps
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supplies := keeper.GetAllAssetSupplies(ctx)
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for _, supply := range supplies {
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incomingSupply := incomingSupplies.AmountOf(supply.GetDenom())
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if !supply.IncomingSupply.Amount.Equal(incomingSupply) {
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panic(fmt.Sprintf("asset's incoming supply %s does not match amount %s in incoming atomic swaps",
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supply.IncomingSupply, incomingSupply))
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}
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outgoingSupply := outgoingSupplies.AmountOf(supply.GetDenom())
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if !supply.OutgoingSupply.Amount.Equal(outgoingSupply) {
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panic(fmt.Sprintf("asset's outgoing supply %s does not match amount %s in outgoing atomic swaps",
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supply.OutgoingSupply, outgoingSupply))
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}
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limit, err := keeper.GetSupplyLimit(ctx, supply.GetDenom())
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if err != nil {
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panic(fmt.Sprintf("asset's supply limit not found: %s", err))
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}
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if supply.CurrentSupply.Amount.GT(limit.Limit) {
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panic(fmt.Sprintf("asset's current supply %s is over the supply limit %s", supply.CurrentSupply, limit.Limit))
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}
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if supply.IncomingSupply.Amount.GT(limit.Limit) {
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panic(fmt.Sprintf("asset's incoming supply %s is over the supply limit %s", supply.IncomingSupply, limit.Limit))
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}
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if supply.IncomingSupply.Amount.Add(supply.CurrentSupply.Amount).GT(limit.Limit) {
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panic(fmt.Sprintf("asset's incoming supply + current supply %s is over the supply limit %s", supply.IncomingSupply.Add(supply.CurrentSupply), limit.Limit))
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}
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if supply.OutgoingSupply.Amount.GT(limit.Limit) {
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panic(fmt.Sprintf("asset's outgoing supply %s is over the supply limit %s", supply.OutgoingSupply, limit.Limit))
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}
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}
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}
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// ExportGenesis writes the current store values to a genesis file, which can be imported again with InitGenesis
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func ExportGenesis(ctx sdk.Context, k keeper.Keeper) (data types.GenesisState) {
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params := k.GetParams(ctx)
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swaps := k.GetAllAtomicSwaps(ctx)
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supplies := k.GetAllAssetSupplies(ctx)
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previousBlockTime, found := k.GetPreviousBlockTime(ctx)
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if !found {
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previousBlockTime = types.DefaultPreviousBlockTime
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}
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return types.NewGenesisState(params, swaps, supplies, previousBlockTime)
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}
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