github.com/ethw3/go-ethereuma@v0.0.0-20221013053120-c14602a4c23c/cmd/evm/internal/t8ntool/execution.go (about) 1 // Copyright 2020 The go-ethereum Authors 2 // This file is part of go-ethereum. 3 // 4 // go-ethereum is free software: you can redistribute it and/or modify 5 // it under the terms of the GNU General Public License as published by 6 // the Free Software Foundation, either version 3 of the License, or 7 // (at your option) any later version. 8 // 9 // go-ethereum is distributed in the hope that it will be useful, 10 // but WITHOUT ANY WARRANTY; without even the implied warranty of 11 // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 12 // GNU General Public License for more details. 13 // 14 // You should have received a copy of the GNU General Public License 15 // along with go-ethereum. If not, see <http://www.gnu.org/licenses/>. 16 17 package t8ntool 18 19 import ( 20 "fmt" 21 "math/big" 22 "os" 23 24 "github.com/ethw3/go-ethereuma/common" 25 "github.com/ethw3/go-ethereuma/common/math" 26 "github.com/ethw3/go-ethereuma/consensus/ethash" 27 "github.com/ethw3/go-ethereuma/consensus/misc" 28 "github.com/ethw3/go-ethereuma/core" 29 "github.com/ethw3/go-ethereuma/core/rawdb" 30 "github.com/ethw3/go-ethereuma/core/state" 31 "github.com/ethw3/go-ethereuma/core/types" 32 "github.com/ethw3/go-ethereuma/core/vm" 33 "github.com/ethw3/go-ethereuma/crypto" 34 "github.com/ethw3/go-ethereuma/ethdb" 35 "github.com/ethw3/go-ethereuma/log" 36 "github.com/ethw3/go-ethereuma/params" 37 "github.com/ethw3/go-ethereuma/rlp" 38 "github.com/ethw3/go-ethereuma/trie" 39 "golang.org/x/crypto/sha3" 40 ) 41 42 type Prestate struct { 43 Env stEnv `json:"env"` 44 Pre core.GenesisAlloc `json:"pre"` 45 } 46 47 // ExecutionResult contains the execution status after running a state test, any 48 // error that might have occurred and a dump of the final state if requested. 49 type ExecutionResult struct { 50 StateRoot common.Hash `json:"stateRoot"` 51 TxRoot common.Hash `json:"txRoot"` 52 ReceiptRoot common.Hash `json:"receiptsRoot"` 53 LogsHash common.Hash `json:"logsHash"` 54 Bloom types.Bloom `json:"logsBloom" gencodec:"required"` 55 Receipts types.Receipts `json:"receipts"` 56 Rejected []*rejectedTx `json:"rejected,omitempty"` 57 Difficulty *math.HexOrDecimal256 `json:"currentDifficulty" gencodec:"required"` 58 GasUsed math.HexOrDecimal64 `json:"gasUsed"` 59 } 60 61 type ommer struct { 62 Delta uint64 `json:"delta"` 63 Address common.Address `json:"address"` 64 } 65 66 //go:generate go run github.com/fjl/gencodec -type stEnv -field-override stEnvMarshaling -out gen_stenv.go 67 type stEnv struct { 68 Coinbase common.Address `json:"currentCoinbase" gencodec:"required"` 69 Difficulty *big.Int `json:"currentDifficulty"` 70 Random *big.Int `json:"currentRandom"` 71 ParentDifficulty *big.Int `json:"parentDifficulty"` 72 GasLimit uint64 `json:"currentGasLimit" gencodec:"required"` 73 Number uint64 `json:"currentNumber" gencodec:"required"` 74 Timestamp uint64 `json:"currentTimestamp" gencodec:"required"` 75 ParentTimestamp uint64 `json:"parentTimestamp,omitempty"` 76 BlockHashes map[math.HexOrDecimal64]common.Hash `json:"blockHashes,omitempty"` 77 Ommers []ommer `json:"ommers,omitempty"` 78 BaseFee *big.Int `json:"currentBaseFee,omitempty"` 79 ParentUncleHash common.Hash `json:"parentUncleHash"` 80 } 81 82 type stEnvMarshaling struct { 83 Coinbase common.UnprefixedAddress 84 Difficulty *math.HexOrDecimal256 85 Random *math.HexOrDecimal256 86 ParentDifficulty *math.HexOrDecimal256 87 GasLimit math.HexOrDecimal64 88 Number math.HexOrDecimal64 89 Timestamp math.HexOrDecimal64 90 ParentTimestamp math.HexOrDecimal64 91 BaseFee *math.HexOrDecimal256 92 } 93 94 type rejectedTx struct { 95 Index int `json:"index"` 96 Err string `json:"error"` 97 } 98 99 // Apply applies a set of transactions to a pre-state 100 func (pre *Prestate) Apply(vmConfig vm.Config, chainConfig *params.ChainConfig, 101 txs types.Transactions, miningReward int64, 102 getTracerFn func(txIndex int, txHash common.Hash) (tracer vm.EVMLogger, err error)) (*state.StateDB, *ExecutionResult, error) { 103 // Capture errors for BLOCKHASH operation, if we haven't been supplied the 104 // required blockhashes 105 var hashError error 106 getHash := func(num uint64) common.Hash { 107 if pre.Env.BlockHashes == nil { 108 hashError = fmt.Errorf("getHash(%d) invoked, no blockhashes provided", num) 109 return common.Hash{} 110 } 111 h, ok := pre.Env.BlockHashes[math.HexOrDecimal64(num)] 112 if !ok { 113 hashError = fmt.Errorf("getHash(%d) invoked, blockhash for that block not provided", num) 114 } 115 return h 116 } 117 var ( 118 statedb = MakePreState(rawdb.NewMemoryDatabase(), pre.Pre) 119 signer = types.MakeSigner(chainConfig, new(big.Int).SetUint64(pre.Env.Number)) 120 gaspool = new(core.GasPool) 121 blockHash = common.Hash{0x13, 0x37} 122 rejectedTxs []*rejectedTx 123 includedTxs types.Transactions 124 gasUsed = uint64(0) 125 receipts = make(types.Receipts, 0) 126 txIndex = 0 127 ) 128 gaspool.AddGas(pre.Env.GasLimit) 129 vmContext := vm.BlockContext{ 130 CanTransfer: core.CanTransfer, 131 Transfer: core.Transfer, 132 Coinbase: pre.Env.Coinbase, 133 BlockNumber: new(big.Int).SetUint64(pre.Env.Number), 134 Time: new(big.Int).SetUint64(pre.Env.Timestamp), 135 Difficulty: pre.Env.Difficulty, 136 GasLimit: pre.Env.GasLimit, 137 GetHash: getHash, 138 } 139 // If currentBaseFee is defined, add it to the vmContext. 140 if pre.Env.BaseFee != nil { 141 vmContext.BaseFee = new(big.Int).Set(pre.Env.BaseFee) 142 } 143 // If random is defined, add it to the vmContext. 144 if pre.Env.Random != nil { 145 rnd := common.BigToHash(pre.Env.Random) 146 vmContext.Random = &rnd 147 } 148 // If DAO is supported/enabled, we need to handle it here. In geth 'proper', it's 149 // done in StateProcessor.Process(block, ...), right before transactions are applied. 150 if chainConfig.DAOForkSupport && 151 chainConfig.DAOForkBlock != nil && 152 chainConfig.DAOForkBlock.Cmp(new(big.Int).SetUint64(pre.Env.Number)) == 0 { 153 misc.ApplyDAOHardFork(statedb) 154 } 155 156 for i, tx := range txs { 157 msg, err := tx.AsMessage(signer, pre.Env.BaseFee) 158 if err != nil { 159 log.Warn("rejected tx", "index", i, "hash", tx.Hash(), "error", err) 160 rejectedTxs = append(rejectedTxs, &rejectedTx{i, err.Error()}) 161 continue 162 } 163 tracer, err := getTracerFn(txIndex, tx.Hash()) 164 if err != nil { 165 return nil, nil, err 166 } 167 vmConfig.Tracer = tracer 168 vmConfig.Debug = (tracer != nil) 169 statedb.Prepare(tx.Hash(), txIndex) 170 txContext := core.NewEVMTxContext(msg) 171 snapshot := statedb.Snapshot() 172 evm := vm.NewEVM(vmContext, txContext, statedb, chainConfig, vmConfig) 173 174 // (ret []byte, usedGas uint64, failed bool, err error) 175 msgResult, err := core.ApplyMessage(evm, msg, gaspool) 176 if err != nil { 177 statedb.RevertToSnapshot(snapshot) 178 log.Info("rejected tx", "index", i, "hash", tx.Hash(), "from", msg.From(), "error", err) 179 rejectedTxs = append(rejectedTxs, &rejectedTx{i, err.Error()}) 180 continue 181 } 182 includedTxs = append(includedTxs, tx) 183 if hashError != nil { 184 return nil, nil, NewError(ErrorMissingBlockhash, hashError) 185 } 186 gasUsed += msgResult.UsedGas 187 188 // Receipt: 189 { 190 var root []byte 191 if chainConfig.IsByzantium(vmContext.BlockNumber) { 192 statedb.Finalise(true) 193 } else { 194 root = statedb.IntermediateRoot(chainConfig.IsEIP158(vmContext.BlockNumber)).Bytes() 195 } 196 197 // Create a new receipt for the transaction, storing the intermediate root and 198 // gas used by the tx. 199 receipt := &types.Receipt{Type: tx.Type(), PostState: root, CumulativeGasUsed: gasUsed} 200 if msgResult.Failed() { 201 receipt.Status = types.ReceiptStatusFailed 202 } else { 203 receipt.Status = types.ReceiptStatusSuccessful 204 } 205 receipt.TxHash = tx.Hash() 206 receipt.GasUsed = msgResult.UsedGas 207 208 // If the transaction created a contract, store the creation address in the receipt. 209 if msg.To() == nil { 210 receipt.ContractAddress = crypto.CreateAddress(evm.TxContext.Origin, tx.Nonce()) 211 } 212 213 // Set the receipt logs and create the bloom filter. 214 receipt.Logs = statedb.GetLogs(tx.Hash(), blockHash) 215 receipt.Bloom = types.CreateBloom(types.Receipts{receipt}) 216 // These three are non-consensus fields: 217 //receipt.BlockHash 218 //receipt.BlockNumber 219 receipt.TransactionIndex = uint(txIndex) 220 receipts = append(receipts, receipt) 221 } 222 223 txIndex++ 224 } 225 statedb.IntermediateRoot(chainConfig.IsEIP158(vmContext.BlockNumber)) 226 // Add mining reward? 227 if miningReward > 0 { 228 // Add mining reward. The mining reward may be `0`, which only makes a difference in the cases 229 // where 230 // - the coinbase suicided, or 231 // - there are only 'bad' transactions, which aren't executed. In those cases, 232 // the coinbase gets no txfee, so isn't created, and thus needs to be touched 233 var ( 234 blockReward = big.NewInt(miningReward) 235 minerReward = new(big.Int).Set(blockReward) 236 perOmmer = new(big.Int).Div(blockReward, big.NewInt(32)) 237 ) 238 for _, ommer := range pre.Env.Ommers { 239 // Add 1/32th for each ommer included 240 minerReward.Add(minerReward, perOmmer) 241 // Add (8-delta)/8 242 reward := big.NewInt(8) 243 reward.Sub(reward, new(big.Int).SetUint64(ommer.Delta)) 244 reward.Mul(reward, blockReward) 245 reward.Div(reward, big.NewInt(8)) 246 statedb.AddBalance(ommer.Address, reward) 247 } 248 statedb.AddBalance(pre.Env.Coinbase, minerReward) 249 } 250 // Commit block 251 root, err := statedb.Commit(chainConfig.IsEIP158(vmContext.BlockNumber)) 252 if err != nil { 253 fmt.Fprintf(os.Stderr, "Could not commit state: %v", err) 254 return nil, nil, NewError(ErrorEVM, fmt.Errorf("could not commit state: %v", err)) 255 } 256 execRs := &ExecutionResult{ 257 StateRoot: root, 258 TxRoot: types.DeriveSha(includedTxs, trie.NewStackTrie(nil)), 259 ReceiptRoot: types.DeriveSha(receipts, trie.NewStackTrie(nil)), 260 Bloom: types.CreateBloom(receipts), 261 LogsHash: rlpHash(statedb.Logs()), 262 Receipts: receipts, 263 Rejected: rejectedTxs, 264 Difficulty: (*math.HexOrDecimal256)(vmContext.Difficulty), 265 GasUsed: (math.HexOrDecimal64)(gasUsed), 266 } 267 return statedb, execRs, nil 268 } 269 270 func MakePreState(db ethdb.Database, accounts core.GenesisAlloc) *state.StateDB { 271 sdb := state.NewDatabaseWithConfig(db, &trie.Config{Preimages: true}) 272 statedb, _ := state.New(common.Hash{}, sdb, nil) 273 for addr, a := range accounts { 274 statedb.SetCode(addr, a.Code) 275 statedb.SetNonce(addr, a.Nonce) 276 statedb.SetBalance(addr, a.Balance) 277 for k, v := range a.Storage { 278 statedb.SetState(addr, k, v) 279 } 280 } 281 // Commit and re-open to start with a clean state. 282 root, _ := statedb.Commit(false) 283 statedb, _ = state.New(root, sdb, nil) 284 return statedb 285 } 286 287 func rlpHash(x interface{}) (h common.Hash) { 288 hw := sha3.NewLegacyKeccak256() 289 rlp.Encode(hw, x) 290 hw.Sum(h[:0]) 291 return h 292 } 293 294 // calcDifficulty is based on ethash.CalcDifficulty. This method is used in case 295 // the caller does not provide an explicit difficulty, but instead provides only 296 // parent timestamp + difficulty. 297 // Note: this method only works for ethash engine. 298 func calcDifficulty(config *params.ChainConfig, number, currentTime, parentTime uint64, 299 parentDifficulty *big.Int, parentUncleHash common.Hash) *big.Int { 300 uncleHash := parentUncleHash 301 if uncleHash == (common.Hash{}) { 302 uncleHash = types.EmptyUncleHash 303 } 304 parent := &types.Header{ 305 ParentHash: common.Hash{}, 306 UncleHash: uncleHash, 307 Difficulty: parentDifficulty, 308 Number: new(big.Int).SetUint64(number - 1), 309 Time: parentTime, 310 } 311 return ethash.CalcDifficulty(config, currentTime, parent) 312 }