forked from cerc-io/laconicd-deprecated
173 lines
6.5 KiB
Go
173 lines
6.5 KiB
Go
// The implementation below is to be considered highly unstable and a continual
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// WIP. It is a means to replicate and test replaying Ethereum transactions
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// using the Cosmos SDK and the EVM. The ultimate result will be what is known
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// as Ethermint.
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package main
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// eth_common "github.com/ethereum/go-ethereum/common"
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// eth_misc "github.com/ethereum/go-ethereum/consensus/misc"
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// eth_core "github.com/ethereum/go-ethereum/core"
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// eth_state "github.com/ethereum/go-ethereum/core/state"
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// eth_types "github.com/ethereum/go-ethereum/core/types"
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// eth_vm "github.com/ethereum/go-ethereum/core/vm"
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// eth_params "github.com/ethereum/go-ethereum/params"
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// eth_rlp "github.com/ethereum/go-ethereum/rlp"
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// dbm "github.com/tendermint/tendermint/libs/db"
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// var (
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// // TODO: Document...
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// miner501 = eth_common.HexToAddress("0x35e8e5dC5FBd97c5b421A80B596C030a2Be2A04D")
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// )
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func main() {
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// stateDb := dbm.NewDB("state" /* name */, dbm.MemDBBackend, "" /* dir */)
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// codeDB := dbm.NewDB("code" /* name */, dbm.MemDBBackend, "" /* dir */)
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// d, err := OurNewDatabase(stateDb, codeDB)
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// if err != nil {
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// panic(err)
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// }
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// fmt.Printf("Instantiating state.StateDB\n")
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// // With empty root hash, i.e. empty state
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// statedb, err := eth_state.New(eth_common.Hash{}, d)
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// if err != nil {
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// panic(err)
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// }
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// g := eth_core.DefaultGenesisBlock()
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// for addr, account := range g.Alloc {
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// statedb.AddBalance(addr, account.Balance)
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// statedb.SetCode(addr, account.Code)
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// statedb.SetNonce(addr, account.Nonce)
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// for key, value := range account.Storage {
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// statedb.SetState(addr, key, value)
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// }
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// }
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// // One of the genesis account having 200 ETH
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// b := statedb.GetBalance(eth_common.HexToAddress("0x756F45E3FA69347A9A973A725E3C98bC4db0b5a0"))
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// fmt.Printf("Balance: %s\n", b)
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// genesis_root, err := statedb.Commit(false /* deleteEmptyObjects */)
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// if err != nil {
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// panic(err)
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// }
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// commitID := d.stateStore.Commit()
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// fmt.Printf("CommitID after genesis: %v\n", commitID)
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// fmt.Printf("Genesis state root hash: %x\n", genesis_root[:])
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// // File with blockchain data exported from geth by using "geth expordb" command
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// input, err := os.Open("/Users/alexeyakhunov/mygit/blockchain")
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// if err != nil {
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// panic(err)
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// }
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// defer input.Close()
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// // Ethereum mainnet config
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// chainConfig := eth_params.MainnetChainConfig
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// stream := eth_rlp.NewStream(input, 0)
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// var block eth_types.Block
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// n := 0
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// var root500 eth_common.Hash // Root hash after block 500
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// var root501 eth_common.Hash // Root hash after block 501
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// prev_root := genesis_root
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// d.tracing = true
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// chainContext := &OurChainContext{}
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// vmConfig := eth_vm.Config{}
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// for {
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// if err = stream.Decode(&block); err == io.EOF {
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// err = nil // Clear it
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// break
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// } else if err != nil {
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// panic(fmt.Errorf("at block %d: %v", block.NumberU64(), err))
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// }
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// // don't import first block
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// if block.NumberU64() == 0 {
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// continue
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// }
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// header := block.Header()
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// chainContext.coinbase = header.Coinbase
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// statedb, err := eth_state.New(prev_root, d)
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// if err != nil {
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// panic(fmt.Errorf("at block %d: %v", block.NumberU64(), err))
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// }
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// var (
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// receipts eth_types.Receipts
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// usedGas = new(uint64)
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// allLogs []*eth_types.Log
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// gp = new(eth_core.GasPool).AddGas(block.GasLimit())
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// )
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// if chainConfig.DAOForkSupport && chainConfig.DAOForkBlock != nil && chainConfig.DAOForkBlock.Cmp(block.Number()) == 0 {
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// eth_misc.ApplyDAOHardFork(statedb)
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// }
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// for i, tx := range block.Transactions() {
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// statedb.Prepare(tx.Hash(), block.Hash(), i)
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// var h eth_common.Hash = tx.Hash()
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// if bytes.Equal(h[:], eth_common.FromHex("0xc438cfcc3b74a28741bda361032f1c6362c34aa0e1cedff693f31ec7d6a12717")) {
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// vmConfig.Tracer = eth_vm.NewStructLogger(ð_vm.LogConfig{})
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// vmConfig.Debug = true
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// }
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// receipt, _, err := eth_core.ApplyTransaction(chainConfig, chainContext, nil, gp, statedb, header, tx, usedGas, vmConfig)
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// if vmConfig.Tracer != nil {
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// w, err := os.Create("structlogs.txt")
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// if err != nil {
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// panic(err)
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// }
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// encoder := json.NewEncoder(w)
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// logs := FormatLogs(vmConfig.Tracer.(*eth_vm.StructLogger).StructLogs())
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// if err := encoder.Encode(logs); err != nil {
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// panic(err)
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// }
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// if err := w.Close(); err != nil {
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// panic(err)
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// }
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// vmConfig.Debug = false
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// vmConfig.Tracer = nil
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// }
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// if err != nil {
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// panic(fmt.Errorf("at block %d, tx %x: %v", block.NumberU64(), tx.Hash(), err))
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// }
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// receipts = append(receipts, receipt)
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// allLogs = append(allLogs, receipt.Logs...)
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// }
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// // Apply mining rewards to the statedb
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// accumulateRewards(chainConfig, statedb, header, block.Uncles())
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// // Commit block
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// prev_root, err = statedb.Commit(chainConfig.IsEIP158(block.Number()) /* deleteEmptyObjects */)
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// if err != nil {
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// panic(fmt.Errorf("at block %d: %v", block.NumberU64(), err))
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// }
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// //fmt.Printf("State root after block %d: %x\n", block.NumberU64(), prev_root)
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// d.stateStore.Commit()
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// //fmt.Printf("CommitID after block %d: %v\n", block.NumberU64(), commitID)
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// switch block.NumberU64() {
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// case 500:
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// root500 = prev_root
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// case 501:
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// root501 = prev_root
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// }
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// n++
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// if n%10000 == 0 {
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// fmt.Printf("Processed %d blocks\n", n)
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// }
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// if n >= 100000 {
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// break
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// }
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// }
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// fmt.Printf("Processed %d blocks\n", n)
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// d.tracing = true
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// genesis_state, err := eth_state.New(genesis_root, d)
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// fmt.Printf("Balance of one of the genesis investors: %s\n", genesis_state.GetBalance(eth_common.HexToAddress("0x756F45E3FA69347A9A973A725E3C98bC4db0b5a0")))
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// //miner501 := eth_common.HexToAddress("0x35e8e5dC5FBd97c5b421A80B596C030a2Be2A04D") // Miner of the block 501
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// // Try to create a new statedb from root of the block 500
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// fmt.Printf("root500: %x\n", root500[:])
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// state500, err := eth_state.New(root500, d)
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// if err != nil {
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// panic(err)
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// }
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// miner501_balance_at_500 := state500.GetBalance(miner501)
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// state501, err := eth_state.New(root501, d)
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// if err != nil {
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// panic(err)
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// }
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// miner501_balance_at_501 := state501.GetBalance(miner501)
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// fmt.Printf("Investor's balance after block 500: %d\n", state500.GetBalance(eth_common.HexToAddress("0x756F45E3FA69347A9A973A725E3C98bC4db0b5a0")))
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// fmt.Printf("Miner of block 501's balance after block 500: %d\n", miner501_balance_at_500)
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// fmt.Printf("Miner of block 501's balance after block 501: %d\n", miner501_balance_at_501)
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}
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