forked from cerc-io/laconicd-deprecated
35850e620d
* Problem: grpc query fail on legacy blocks `BaseFee` and `EthCall`. Solution: - since grpc query handlers are used for all versions of the blocks, it need to be compatible with legacy formats. debug fix basefee fetch Revert "debug" This reverts commit 50ebaf697fc06b0d6e26abd8de8f89717e8a219d. update gomod2nix Update CHANGELOG.md debug fix panic Revert "debug" This reverts commit e08af04b0776bd390c42706cc9ec978e00bcb3bb. * add upgrade integration test * Update tests/integration_tests/configs/upgrade-test-package.nix Co-authored-by: Federico Kunze Küllmer <31522760+fedekunze@users.noreply.github.com>
372 lines
12 KiB
Go
372 lines
12 KiB
Go
package keeper
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import (
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"math/big"
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"github.com/cosmos/cosmos-sdk/codec"
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"github.com/cosmos/cosmos-sdk/store/prefix"
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storetypes "github.com/cosmos/cosmos-sdk/store/types"
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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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paramtypes "github.com/cosmos/cosmos-sdk/x/params/types"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core"
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ethtypes "github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/core/vm"
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"github.com/ethereum/go-ethereum/params"
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"github.com/tendermint/tendermint/libs/log"
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ethermint "github.com/evmos/ethermint/types"
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"github.com/evmos/ethermint/x/evm/statedb"
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"github.com/evmos/ethermint/x/evm/types"
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evm "github.com/evmos/ethermint/x/evm/vm"
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)
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// Keeper grants access to the EVM module state and implements the go-ethereum StateDB interface.
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type Keeper struct {
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// Protobuf codec
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cdc codec.BinaryCodec
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// Store key required for the EVM Prefix KVStore. It is required by:
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// - storing account's Storage State
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// - storing account's Code
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// - storing transaction Logs
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// - storing Bloom filters by block height. Needed for the Web3 API.
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storeKey storetypes.StoreKey
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// key to access the transient store, which is reset on every block during Commit
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transientKey storetypes.StoreKey
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// module specific parameter space that can be configured through governance
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paramSpace paramtypes.Subspace
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// access to account state
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accountKeeper types.AccountKeeper
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// update balance and accounting operations with coins
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bankKeeper types.BankKeeper
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// access historical headers for EVM state transition execution
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stakingKeeper types.StakingKeeper
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// fetch EIP1559 base fee and parameters
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feeMarketKeeper types.FeeMarketKeeper
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// chain ID number obtained from the context's chain id
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eip155ChainID *big.Int
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// Tracer used to collect execution traces from the EVM transaction execution
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tracer string
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// EVM Hooks for tx post-processing
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hooks types.EvmHooks
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// custom stateless precompiled smart contracts
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customPrecompiles evm.PrecompiledContracts
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// evm constructor function
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evmConstructor evm.Constructor
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}
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// NewKeeper generates new evm module keeper
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func NewKeeper(
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cdc codec.BinaryCodec,
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storeKey, transientKey storetypes.StoreKey,
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paramSpace paramtypes.Subspace,
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ak types.AccountKeeper,
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bankKeeper types.BankKeeper,
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sk types.StakingKeeper,
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fmk types.FeeMarketKeeper,
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customPrecompiles evm.PrecompiledContracts,
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evmConstructor evm.Constructor,
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tracer string,
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) *Keeper {
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// ensure evm module account is set
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if addr := ak.GetModuleAddress(types.ModuleName); addr == nil {
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panic("the EVM module account has not been set")
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}
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// set KeyTable if it has not already been set
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if !paramSpace.HasKeyTable() {
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paramSpace = paramSpace.WithKeyTable(types.ParamKeyTable())
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}
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// NOTE: we pass in the parameter space to the CommitStateDB in order to use custom denominations for the EVM operations
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return &Keeper{
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cdc: cdc,
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paramSpace: paramSpace,
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accountKeeper: ak,
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bankKeeper: bankKeeper,
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stakingKeeper: sk,
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feeMarketKeeper: fmk,
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storeKey: storeKey,
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transientKey: transientKey,
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customPrecompiles: customPrecompiles,
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evmConstructor: evmConstructor,
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tracer: tracer,
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}
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}
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// Logger returns a module-specific logger.
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func (k Keeper) Logger(ctx sdk.Context) log.Logger {
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return ctx.Logger().With("module", types.ModuleName)
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}
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// WithChainID sets the chain id to the local variable in the keeper
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func (k *Keeper) WithChainID(ctx sdk.Context) {
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chainID, err := ethermint.ParseChainID(ctx.ChainID())
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if err != nil {
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panic(err)
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}
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if k.eip155ChainID != nil && k.eip155ChainID.Cmp(chainID) != 0 {
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panic("chain id already set")
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}
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k.eip155ChainID = chainID
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}
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// ChainID returns the EIP155 chain ID for the EVM context
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func (k Keeper) ChainID() *big.Int {
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return k.eip155ChainID
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}
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// ----------------------------------------------------------------------------
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// Block Bloom
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// Required by Web3 API.
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// ----------------------------------------------------------------------------
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// EmitBlockBloomEvent emit block bloom events
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func (k Keeper) EmitBlockBloomEvent(ctx sdk.Context, bloom ethtypes.Bloom) {
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ctx.EventManager().EmitEvent(
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sdk.NewEvent(
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types.EventTypeBlockBloom,
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sdk.NewAttribute(types.AttributeKeyEthereumBloom, string(bloom.Bytes())),
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),
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)
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}
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// GetBlockBloomTransient returns bloom bytes for the current block height
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func (k Keeper) GetBlockBloomTransient(ctx sdk.Context) *big.Int {
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store := prefix.NewStore(ctx.TransientStore(k.transientKey), types.KeyPrefixTransientBloom)
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heightBz := sdk.Uint64ToBigEndian(uint64(ctx.BlockHeight()))
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bz := store.Get(heightBz)
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if len(bz) == 0 {
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return big.NewInt(0)
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}
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return new(big.Int).SetBytes(bz)
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}
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// SetBlockBloomTransient sets the given bloom bytes to the transient store. This value is reset on
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// every block.
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func (k Keeper) SetBlockBloomTransient(ctx sdk.Context, bloom *big.Int) {
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store := prefix.NewStore(ctx.TransientStore(k.transientKey), types.KeyPrefixTransientBloom)
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heightBz := sdk.Uint64ToBigEndian(uint64(ctx.BlockHeight()))
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store.Set(heightBz, bloom.Bytes())
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}
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// ----------------------------------------------------------------------------
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// Tx
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// ----------------------------------------------------------------------------
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// SetTxIndexTransient set the index of processing transaction
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func (k Keeper) SetTxIndexTransient(ctx sdk.Context, index uint64) {
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store := ctx.TransientStore(k.transientKey)
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store.Set(types.KeyPrefixTransientTxIndex, sdk.Uint64ToBigEndian(index))
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}
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// GetTxIndexTransient returns EVM transaction index on the current block.
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func (k Keeper) GetTxIndexTransient(ctx sdk.Context) uint64 {
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store := ctx.TransientStore(k.transientKey)
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bz := store.Get(types.KeyPrefixTransientTxIndex)
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if len(bz) == 0 {
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return 0
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}
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return sdk.BigEndianToUint64(bz)
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}
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// ----------------------------------------------------------------------------
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// Log
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// ----------------------------------------------------------------------------
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// GetLogSizeTransient returns EVM log index on the current block.
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func (k Keeper) GetLogSizeTransient(ctx sdk.Context) uint64 {
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store := ctx.TransientStore(k.transientKey)
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bz := store.Get(types.KeyPrefixTransientLogSize)
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if len(bz) == 0 {
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return 0
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}
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return sdk.BigEndianToUint64(bz)
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}
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// SetLogSizeTransient fetches the current EVM log index from the transient store, increases its
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// value by one and then sets the new index back to the transient store.
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func (k Keeper) SetLogSizeTransient(ctx sdk.Context, logSize uint64) {
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store := ctx.TransientStore(k.transientKey)
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store.Set(types.KeyPrefixTransientLogSize, sdk.Uint64ToBigEndian(logSize))
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}
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// ----------------------------------------------------------------------------
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// Storage
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// ----------------------------------------------------------------------------
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// GetAccountStorage return state storage associated with an account
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func (k Keeper) GetAccountStorage(ctx sdk.Context, address common.Address) types.Storage {
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storage := types.Storage{}
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k.ForEachStorage(ctx, address, func(key, value common.Hash) bool {
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storage = append(storage, types.NewState(key, value))
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return true
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})
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return storage
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}
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// ----------------------------------------------------------------------------
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// Account
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// ----------------------------------------------------------------------------
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// SetHooks sets the hooks for the EVM module
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// It should be called only once during initialization, it panic if called more than once.
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func (k *Keeper) SetHooks(eh types.EvmHooks) *Keeper {
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if k.hooks != nil {
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panic("cannot set evm hooks twice")
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}
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k.hooks = eh
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return k
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}
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// PostTxProcessing delegate the call to the hooks. If no hook has been registered, this function returns with a `nil` error
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func (k *Keeper) PostTxProcessing(ctx sdk.Context, msg core.Message, receipt *ethtypes.Receipt) error {
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if k.hooks == nil {
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return nil
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}
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return k.hooks.PostTxProcessing(ctx, msg, receipt)
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}
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// Tracer return a default vm.Tracer based on current keeper state
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func (k Keeper) Tracer(ctx sdk.Context, msg core.Message, ethCfg *params.ChainConfig) vm.EVMLogger {
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return types.NewTracer(k.tracer, msg, ethCfg, ctx.BlockHeight())
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}
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// GetAccountWithoutBalance load nonce and codehash without balance,
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// more efficient in cases where balance is not needed.
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func (k *Keeper) GetAccountWithoutBalance(ctx sdk.Context, addr common.Address) *statedb.Account {
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cosmosAddr := sdk.AccAddress(addr.Bytes())
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acct := k.accountKeeper.GetAccount(ctx, cosmosAddr)
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if acct == nil {
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return nil
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}
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codeHash := types.EmptyCodeHash
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ethAcct, ok := acct.(ethermint.EthAccountI)
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if ok {
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codeHash = ethAcct.GetCodeHash().Bytes()
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}
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return &statedb.Account{
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Nonce: acct.GetSequence(),
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CodeHash: codeHash,
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}
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}
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// GetAccountOrEmpty returns empty account if not exist, returns error if it's not `EthAccount`
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func (k *Keeper) GetAccountOrEmpty(ctx sdk.Context, addr common.Address) statedb.Account {
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acct := k.GetAccount(ctx, addr)
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if acct != nil {
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return *acct
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}
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// empty account
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return statedb.Account{
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Balance: new(big.Int),
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CodeHash: types.EmptyCodeHash,
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}
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}
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// GetNonce returns the sequence number of an account, returns 0 if not exists.
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func (k *Keeper) GetNonce(ctx sdk.Context, addr common.Address) uint64 {
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cosmosAddr := sdk.AccAddress(addr.Bytes())
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acct := k.accountKeeper.GetAccount(ctx, cosmosAddr)
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if acct == nil {
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return 0
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}
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return acct.GetSequence()
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}
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// GetBalance load account's balance of gas token
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func (k *Keeper) GetBalance(ctx sdk.Context, addr common.Address) *big.Int {
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cosmosAddr := sdk.AccAddress(addr.Bytes())
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evmDenom := ""
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k.paramSpace.GetIfExists(ctx, types.ParamStoreKeyEVMDenom, &evmDenom)
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// if node is pruned, params is empty. Return invalid value
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if evmDenom == "" {
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return big.NewInt(-1)
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}
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coin := k.bankKeeper.GetBalance(ctx, cosmosAddr, evmDenom)
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return coin.Amount.BigInt()
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}
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// GetBaseFee returns current base fee, return values:
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// - `nil`: london hardfork not enabled.
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// - `0`: london hardfork enabled but feemarket is not enabled.
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// - `n`: both london hardfork and feemarket are enabled.
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func (k Keeper) GetBaseFee(ctx sdk.Context, ethCfg *params.ChainConfig) *big.Int {
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return k.getBaseFee(ctx, types.IsLondon(ethCfg, ctx.BlockHeight()))
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}
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func (k Keeper) getBaseFee(ctx sdk.Context, london bool) *big.Int {
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if !london {
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return nil
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}
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baseFee := k.feeMarketKeeper.GetBaseFee(ctx)
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if baseFee == nil {
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// return 0 if feemarket not enabled.
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baseFee = big.NewInt(0)
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}
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return baseFee
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}
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// GetMinGasMultiplier returns the MinGasMultiplier param from the fee market module
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func (k Keeper) GetMinGasMultiplier(ctx sdk.Context) sdk.Dec {
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fmkParmas := k.feeMarketKeeper.GetParams(ctx)
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if fmkParmas.MinGasMultiplier.IsNil() {
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// in case we are executing eth_call on a legacy block, returns a zero value.
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return sdk.ZeroDec()
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}
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return fmkParmas.MinGasMultiplier
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}
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// ResetTransientGasUsed reset gas used to prepare for execution of current cosmos tx, called in ante handler.
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func (k Keeper) ResetTransientGasUsed(ctx sdk.Context) {
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store := ctx.TransientStore(k.transientKey)
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store.Delete(types.KeyPrefixTransientGasUsed)
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}
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// GetTransientGasUsed returns the gas used by current cosmos tx.
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func (k Keeper) GetTransientGasUsed(ctx sdk.Context) uint64 {
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store := ctx.TransientStore(k.transientKey)
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bz := store.Get(types.KeyPrefixTransientGasUsed)
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if len(bz) == 0 {
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return 0
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}
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return sdk.BigEndianToUint64(bz)
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}
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// SetTransientGasUsed sets the gas used by current cosmos tx.
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func (k Keeper) SetTransientGasUsed(ctx sdk.Context, gasUsed uint64) {
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store := ctx.TransientStore(k.transientKey)
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bz := sdk.Uint64ToBigEndian(gasUsed)
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store.Set(types.KeyPrefixTransientGasUsed, bz)
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}
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// AddTransientGasUsed accumulate gas used by each eth msgs included in current cosmos tx.
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func (k Keeper) AddTransientGasUsed(ctx sdk.Context, gasUsed uint64) (uint64, error) {
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result := k.GetTransientGasUsed(ctx) + gasUsed
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if result < gasUsed {
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return 0, sdkerrors.Wrap(types.ErrGasOverflow, "transient gas used")
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}
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k.SetTransientGasUsed(ctx, result)
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return result, nil
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}
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