411 lines
13 KiB
Go
411 lines
13 KiB
Go
package importer
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import (
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"flag"
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"fmt"
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"io"
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"math/big"
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"os"
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"os/signal"
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"runtime/pprof"
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"sort"
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"syscall"
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"testing"
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"time"
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"github.com/google/uuid"
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"github.com/stretchr/testify/require"
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sdkcodec "github.com/cosmos/cosmos-sdk/codec"
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codectypes "github.com/cosmos/cosmos-sdk/codec/types"
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"github.com/cosmos/cosmos-sdk/store"
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sdkstore "github.com/cosmos/cosmos-sdk/store/types"
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sdk "github.com/cosmos/cosmos-sdk/types"
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authkeeper "github.com/cosmos/cosmos-sdk/x/auth/keeper"
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authtypes "github.com/cosmos/cosmos-sdk/x/auth/types"
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bankkeeper "github.com/cosmos/cosmos-sdk/x/bank/keeper"
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banktypes "github.com/cosmos/cosmos-sdk/x/bank/types"
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paramkeeper "github.com/cosmos/cosmos-sdk/x/params/keeper"
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paramtypes "github.com/cosmos/cosmos-sdk/x/params/types"
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"github.com/cosmos/ethermint/codec"
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"github.com/cosmos/ethermint/core"
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"github.com/cosmos/ethermint/types"
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evmkeeper "github.com/cosmos/ethermint/x/evm/keeper"
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evmtypes "github.com/cosmos/ethermint/x/evm/types"
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ethcmn "github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/consensus/ethash"
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ethcore "github.com/ethereum/go-ethereum/core"
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ethtypes "github.com/ethereum/go-ethereum/core/types"
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ethvm "github.com/ethereum/go-ethereum/core/vm"
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ethcrypto "github.com/ethereum/go-ethereum/crypto"
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ethparams "github.com/ethereum/go-ethereum/params"
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ethrlp "github.com/ethereum/go-ethereum/rlp"
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tmlog "github.com/tendermint/tendermint/libs/log"
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tmproto "github.com/tendermint/tendermint/proto/tendermint/types"
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dbm "github.com/tendermint/tm-db"
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)
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var (
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flagDataDir string
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flagBlockchain string
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flagCPUProfile string
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genInvestor = ethcmn.HexToAddress("0x756F45E3FA69347A9A973A725E3C98bC4db0b5a0")
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logger = tmlog.NewNopLogger()
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rewardBig8 = big.NewInt(8)
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rewardBig32 = big.NewInt(32)
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)
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func init() {
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flag.StringVar(&flagCPUProfile, "cpu-profile", "", "write CPU profile")
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flag.StringVar(&flagDataDir, "datadir", "", "test data directory for state storage")
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flag.StringVar(&flagBlockchain, "blockchain", "blockchain", "ethereum block export file (blocks to import)")
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testing.Init()
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flag.Parse()
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}
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func newTestCodec() (sdkcodec.BinaryMarshaler, *sdkcodec.LegacyAmino) {
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interfaceRegistry := codectypes.NewInterfaceRegistry()
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cdc := sdkcodec.NewProtoCodec(interfaceRegistry)
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amino := sdkcodec.NewLegacyAmino()
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sdk.RegisterLegacyAminoCodec(amino)
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codec.RegisterInterfaces(interfaceRegistry)
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return cdc, amino
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}
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func cleanup() {
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fmt.Println("cleaning up test execution...")
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os.RemoveAll(flagDataDir)
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if flagCPUProfile != "" {
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pprof.StopCPUProfile()
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}
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}
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func trapSignals() {
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sigs := make(chan os.Signal, 1)
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signal.Notify(sigs, syscall.SIGINT, syscall.SIGTERM)
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go func() {
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<-sigs
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cleanup()
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os.Exit(1)
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}()
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}
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// nolint: interfacer
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func createAndTestGenesis(t *testing.T, cms sdk.CommitMultiStore, ak authkeeper.AccountKeeper, bk bankkeeper.Keeper, evmKeeper *evmkeeper.Keeper) {
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genBlock := ethcore.DefaultGenesisBlock()
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ms := cms.CacheMultiStore()
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ctx := sdk.NewContext(ms, tmproto.Header{}, false, logger)
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// Set the default Ethermint parameters to the parameter keeper store
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evmKeeper.SetParams(ctx, evmtypes.DefaultParams())
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// sort the addresses and insertion of key/value pairs matters
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genAddrs := make([]string, len(genBlock.Alloc))
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i := 0
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for addr := range genBlock.Alloc {
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genAddrs[i] = addr.String()
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i++
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}
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sort.Strings(genAddrs)
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for _, addrStr := range genAddrs {
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addr := ethcmn.HexToAddress(addrStr)
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acc := genBlock.Alloc[addr]
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evmKeeper.AddBalance(ctx, addr, acc.Balance)
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evmKeeper.SetCode(ctx, addr, acc.Code)
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evmKeeper.SetNonce(ctx, addr, acc.Nonce)
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for key, value := range acc.Storage {
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evmKeeper.SetState(ctx, addr, key, value)
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}
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}
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// get balance of one of the genesis account having 400 ETH
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b := evmKeeper.GetBalance(ctx, genInvestor)
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require.Equal(t, "200000000000000000000", b.String())
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// commit the stateDB with 'false' to delete empty objects
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//
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// NOTE: Commit does not yet return the intra merkle root (version)
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_, err := evmKeeper.Commit(ctx, false)
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require.NoError(t, err)
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// persist multi-store cache state
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ms.Write()
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// persist multi-store root state
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cms.Commit()
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// verify account mapper state
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genAcc := ak.GetAccount(ctx, sdk.AccAddress(genInvestor.Bytes()))
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require.NotNil(t, genAcc)
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evmDenom := evmKeeper.GetParams(ctx).EvmDenom
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balance := bk.GetBalance(ctx, genAcc.GetAddress(), evmDenom)
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require.Equal(t, sdk.NewIntFromBigInt(b), balance.Amount)
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}
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func TestImportBlocks(t *testing.T) {
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if flagDataDir == "" {
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flagDataDir = os.TempDir()
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}
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if flagCPUProfile != "" {
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f, err := os.Create(flagCPUProfile)
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require.NoError(t, err, "failed to create CPU profile")
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err = pprof.StartCPUProfile(f)
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require.NoError(t, err, "failed to start CPU profile")
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}
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db, err := dbm.NewDB("state_test"+uuid.New().String(), dbm.GoLevelDBBackend, flagDataDir)
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require.NoError(t, err)
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defer cleanup()
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trapSignals()
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cdc, amino := newTestCodec()
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cms := store.NewCommitMultiStore(db)
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authStoreKey := sdk.NewKVStoreKey(authtypes.StoreKey)
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bankStoreKey := sdk.NewKVStoreKey(banktypes.StoreKey)
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evmStoreKey := sdk.NewKVStoreKey(evmtypes.StoreKey)
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paramsStoreKey := sdk.NewKVStoreKey(paramtypes.StoreKey)
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paramsTransientStoreKey := sdk.NewTransientStoreKey(paramtypes.TStoreKey)
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// mount stores
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keys := []*sdk.KVStoreKey{authStoreKey, bankStoreKey, evmStoreKey, paramsStoreKey}
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for _, key := range keys {
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cms.MountStoreWithDB(key, sdk.StoreTypeIAVL, nil)
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}
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cms.MountStoreWithDB(paramsTransientStoreKey, sdk.StoreTypeTransient, nil)
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paramsKeeper := paramkeeper.NewKeeper(cdc, amino, paramsStoreKey, paramsTransientStoreKey)
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// Set specific subspaces
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authSubspace := paramsKeeper.Subspace(authtypes.ModuleName)
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bankSubspace := paramsKeeper.Subspace(banktypes.ModuleName)
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evmSubspace := paramsKeeper.Subspace(evmtypes.ModuleName).WithKeyTable(evmtypes.ParamKeyTable())
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// create keepers
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ak := authkeeper.NewAccountKeeper(cdc, authStoreKey, authSubspace, types.ProtoAccount, nil)
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bk := bankkeeper.NewBaseKeeper(cdc, bankStoreKey, ak, bankSubspace, nil)
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evmKeeper := evmkeeper.NewKeeper(cdc, evmStoreKey, evmSubspace, ak, bk)
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cms.SetPruning(sdkstore.PruneNothing)
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// load latest version (root)
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err = cms.LoadLatestVersion()
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require.NoError(t, err)
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// set and test genesis block
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createAndTestGenesis(t, cms, ak, bk, evmKeeper)
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// open blockchain export file
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blockchainInput, err := os.Open(flagBlockchain)
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require.Nil(t, err)
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defer func() {
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err := blockchainInput.Close()
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require.NoError(t, err)
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}()
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// ethereum mainnet config
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chainContext := core.NewChainContext()
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vmConfig := ethvm.Config{}
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chainConfig := ethparams.MainnetChainConfig
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// create RLP stream for exported blocks
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stream := ethrlp.NewStream(blockchainInput, 0)
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startTime := time.Now()
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var block ethtypes.Block
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for {
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err = stream.Decode(&block)
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if err == io.EOF {
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break
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}
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require.NoError(t, err, "failed to decode block")
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var (
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usedGas = new(uint64)
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gp = new(ethcore.GasPool).AddGas(block.GasLimit())
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)
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header := block.Header()
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chainContext.Coinbase = header.Coinbase
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chainContext.SetHeader(block.NumberU64(), header)
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// Create a cached-wrapped multi-store based on the commit multi-store and
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// create a new context based off of that.
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ms := cms.CacheMultiStore()
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ctx := sdk.NewContext(ms, tmproto.Header{}, false, logger)
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ctx = ctx.WithBlockHeight(int64(block.NumberU64()))
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if chainConfig.DAOForkSupport && chainConfig.DAOForkBlock != nil && chainConfig.DAOForkBlock.Cmp(block.Number()) == 0 {
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applyDAOHardFork(evmKeeper)
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}
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for i, tx := range block.Transactions() {
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evmKeeper.Prepare(ctx, tx.Hash(), block.Hash(), i)
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// evmKeeper.CommitStateDB.Set(block.Hash())
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receipt, gas, err := applyTransaction(
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chainConfig, chainContext, nil, gp, evmKeeper, header, tx, usedGas, vmConfig,
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)
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require.NoError(t, err, "failed to apply tx at block %d; tx: %X; gas %d; receipt:%v", block.NumberU64(), tx.Hash(), gas, receipt)
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require.NotNil(t, receipt)
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}
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// apply mining rewards
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accumulateRewards(chainConfig, evmKeeper, header, block.Uncles())
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// commit stateDB
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_, err := evmKeeper.CommitStateDB.Commit(chainConfig.IsEIP158(block.Number()))
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require.NoError(t, err, "failed to commit StateDB")
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// simulate BaseApp EndBlocker commitment
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ms.Write()
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cms.Commit()
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// block debugging output
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if block.NumberU64() > 0 && block.NumberU64()%1000 == 0 {
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fmt.Printf("processed block: %d (time so far: %v)\n", block.NumberU64(), time.Since(startTime))
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}
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}
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}
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// accumulateRewards credits the coinbase of the given block with the mining
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// reward. The total reward consists of the static block reward and rewards for
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// included uncles. The coinbase of each uncle block is also rewarded.
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func accumulateRewards(
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config *ethparams.ChainConfig, evmKeeper *evmkeeper.Keeper,
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header *ethtypes.Header, uncles []*ethtypes.Header,
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) {
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// select the correct block reward based on chain progression
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blockReward := ethash.FrontierBlockReward
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if config.IsByzantium(header.Number) {
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blockReward = ethash.ByzantiumBlockReward
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}
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// accumulate the rewards for the miner and any included uncles
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reward := new(big.Int).Set(blockReward)
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r := new(big.Int)
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for _, uncle := range uncles {
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r.Add(uncle.Number, rewardBig8)
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r.Sub(r, header.Number)
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r.Mul(r, blockReward)
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r.Div(r, rewardBig8)
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evmKeeper.CommitStateDB.AddBalance(uncle.Coinbase, r)
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r.Div(blockReward, rewardBig32)
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reward.Add(reward, r)
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}
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evmKeeper.CommitStateDB.AddBalance(header.Coinbase, reward)
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}
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// ApplyDAOHardFork modifies the state database according to the DAO hard-fork
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// rules, transferring all balances of a set of DAO accounts to a single refund
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// contract.
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// Code is pulled from go-ethereum 1.9 because the StateDB interface does not include the
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// SetBalance function implementation
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// Ref: https://github.com/ethereum/go-ethereum/blob/52f2461774bcb8cdd310f86b4bc501df5b783852/consensus/misc/dao.go#L74
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func applyDAOHardFork(evmKeeper *evmkeeper.Keeper) {
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// Retrieve the contract to refund balances into
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if !evmKeeper.CommitStateDB.Exist(ethparams.DAORefundContract) {
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evmKeeper.CommitStateDB.CreateAccount(ethparams.DAORefundContract)
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}
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// Move every DAO account and extra-balance account funds into the refund contract
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for _, addr := range ethparams.DAODrainList() {
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evmKeeper.CommitStateDB.AddBalance(ethparams.DAORefundContract, evmKeeper.CommitStateDB.GetBalance(addr))
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evmKeeper.CommitStateDB.SetBalance(addr, new(big.Int))
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}
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}
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// ApplyTransaction attempts to apply a transaction to the given state database
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// and uses the input parameters for its environment. It returns the receipt
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// for the transaction, gas used and an error if the transaction failed,
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// indicating the block was invalid.
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// Function is also pulled from go-ethereum 1.9 because of the incompatible usage
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// Ref: https://github.com/ethereum/go-ethereum/blob/52f2461774bcb8cdd310f86b4bc501df5b783852/core/state_processor.go#L88
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func applyTransaction(
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config *ethparams.ChainConfig, bc ethcore.ChainContext, author *ethcmn.Address,
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gp *ethcore.GasPool, evmKeeper *evmkeeper.Keeper, header *ethtypes.Header,
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tx *ethtypes.Transaction, usedGas *uint64, cfg ethvm.Config,
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) (*ethtypes.Receipt, uint64, error) {
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msg, err := tx.AsMessage(ethtypes.MakeSigner(config, header.Number))
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if err != nil {
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return nil, 0, err
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}
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// Create a new context to be used in the EVM environment
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blockCtx := ethcore.NewEVMBlockContext(header, bc, author)
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txCtx := ethcore.NewEVMTxContext(msg)
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// Create a new environment which holds all relevant information
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// about the transaction and calling mechanisms.
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vmenv := ethvm.NewEVM(blockCtx, txCtx, evmKeeper.CommitStateDB, config, cfg)
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// Apply the transaction to the current state (included in the env)
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execResult, err := ethcore.ApplyMessage(vmenv, msg, gp)
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if err != nil {
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// NOTE: ignore vm execution error (eg: tx out of gas at block 51169) as we care only about state transition errors
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return ðtypes.Receipt{}, 0, nil
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}
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// Update the state with pending changes
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var intRoot ethcmn.Hash
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if config.IsByzantium(header.Number) {
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err = evmKeeper.CommitStateDB.Finalise(true)
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} else {
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intRoot, err = evmKeeper.CommitStateDB.IntermediateRoot(config.IsEIP158(header.Number))
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}
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if err != nil {
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return nil, execResult.UsedGas, err
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}
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root := intRoot.Bytes()
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*usedGas += execResult.UsedGas
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// Create a new receipt for the transaction, storing the intermediate root and gas used by the tx
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// based on the eip phase, we're passing whether the root touch-delete accounts.
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receipt := ethtypes.NewReceipt(root, execResult.Failed(), *usedGas)
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receipt.TxHash = tx.Hash()
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receipt.GasUsed = execResult.UsedGas
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// if the transaction created a contract, store the creation address in the receipt.
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if msg.To() == nil {
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receipt.ContractAddress = ethcrypto.CreateAddress(vmenv.TxContext.Origin, tx.Nonce())
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}
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// Set the receipt logs and create a bloom for filtering
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receipt.Logs, err = evmKeeper.CommitStateDB.GetLogs(tx.Hash())
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receipt.Bloom = ethtypes.CreateBloom(ethtypes.Receipts{receipt})
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receipt.BlockHash = evmKeeper.CommitStateDB.BlockHash()
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receipt.BlockNumber = header.Number
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receipt.TransactionIndex = uint(evmKeeper.CommitStateDB.TxIndex())
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return receipt, execResult.UsedGas, err
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}
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