github.com/ylsGit/go-ethereum@v1.6.5/core/state_transition.go (about) 1 // Copyright 2014 The go-ethereum Authors 2 // This file is part of the go-ethereum library. 3 // 4 // The go-ethereum library is free software: you can redistribute it and/or modify 5 // it under the terms of the GNU Lesser 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 // The go-ethereum library 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 Lesser General Public License for more details. 13 // 14 // You should have received a copy of the GNU Lesser General Public License 15 // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>. 16 17 package core 18 19 import ( 20 "errors" 21 "fmt" 22 "math/big" 23 24 "github.com/ethereum/go-ethereum/common" 25 "github.com/ethereum/go-ethereum/common/math" 26 "github.com/ethereum/go-ethereum/core/vm" 27 "github.com/ethereum/go-ethereum/log" 28 "github.com/ethereum/go-ethereum/params" 29 ) 30 31 var ( 32 Big0 = big.NewInt(0) 33 errInsufficientBalanceForGas = errors.New("insufficient balance to pay for gas") 34 ) 35 36 /* 37 The State Transitioning Model 38 39 A state transition is a change made when a transaction is applied to the current world state 40 The state transitioning model does all all the necessary work to work out a valid new state root. 41 42 1) Nonce handling 43 2) Pre pay gas 44 3) Create a new state object if the recipient is \0*32 45 4) Value transfer 46 == If contract creation == 47 4a) Attempt to run transaction data 48 4b) If valid, use result as code for the new state object 49 == end == 50 5) Run Script section 51 6) Derive new state root 52 */ 53 type StateTransition struct { 54 gp *GasPool 55 msg Message 56 gas uint64 57 gasPrice *big.Int 58 initialGas *big.Int 59 value *big.Int 60 data []byte 61 state vm.StateDB 62 63 evm *vm.EVM 64 } 65 66 // Message represents a message sent to a contract. 67 type Message interface { 68 From() common.Address 69 //FromFrontier() (common.Address, error) 70 To() *common.Address 71 72 GasPrice() *big.Int 73 Gas() *big.Int 74 Value() *big.Int 75 76 Nonce() uint64 77 CheckNonce() bool 78 Data() []byte 79 } 80 81 // IntrinsicGas computes the 'intrinsic gas' for a message 82 // with the given data. 83 // 84 // TODO convert to uint64 85 func IntrinsicGas(data []byte, contractCreation, homestead bool) *big.Int { 86 igas := new(big.Int) 87 if contractCreation && homestead { 88 igas.SetUint64(params.TxGasContractCreation) 89 } else { 90 igas.SetUint64(params.TxGas) 91 } 92 if len(data) > 0 { 93 var nz int64 94 for _, byt := range data { 95 if byt != 0 { 96 nz++ 97 } 98 } 99 m := big.NewInt(nz) 100 m.Mul(m, new(big.Int).SetUint64(params.TxDataNonZeroGas)) 101 igas.Add(igas, m) 102 m.SetInt64(int64(len(data)) - nz) 103 m.Mul(m, new(big.Int).SetUint64(params.TxDataZeroGas)) 104 igas.Add(igas, m) 105 } 106 return igas 107 } 108 109 // NewStateTransition initialises and returns a new state transition object. 110 func NewStateTransition(evm *vm.EVM, msg Message, gp *GasPool) *StateTransition { 111 return &StateTransition{ 112 gp: gp, 113 evm: evm, 114 msg: msg, 115 gasPrice: msg.GasPrice(), 116 initialGas: new(big.Int), 117 value: msg.Value(), 118 data: msg.Data(), 119 state: evm.StateDB, 120 } 121 } 122 123 // ApplyMessage computes the new state by applying the given message 124 // against the old state within the environment. 125 // 126 // ApplyMessage returns the bytes returned by any EVM execution (if it took place), 127 // the gas used (which includes gas refunds) and an error if it failed. An error always 128 // indicates a core error meaning that the message would always fail for that particular 129 // state and would never be accepted within a block. 130 func ApplyMessage(evm *vm.EVM, msg Message, gp *GasPool) ([]byte, *big.Int, error) { 131 st := NewStateTransition(evm, msg, gp) 132 133 ret, _, gasUsed, err := st.TransitionDb() 134 return ret, gasUsed, err 135 } 136 137 func (st *StateTransition) from() vm.AccountRef { 138 f := st.msg.From() 139 if !st.state.Exist(f) { 140 st.state.CreateAccount(f) 141 } 142 return vm.AccountRef(f) 143 } 144 145 func (st *StateTransition) to() vm.AccountRef { 146 if st.msg == nil { 147 return vm.AccountRef{} 148 } 149 to := st.msg.To() 150 if to == nil { 151 return vm.AccountRef{} // contract creation 152 } 153 154 reference := vm.AccountRef(*to) 155 if !st.state.Exist(*to) { 156 st.state.CreateAccount(*to) 157 } 158 return reference 159 } 160 161 func (st *StateTransition) useGas(amount uint64) error { 162 if st.gas < amount { 163 return vm.ErrOutOfGas 164 } 165 st.gas -= amount 166 167 return nil 168 } 169 170 func (st *StateTransition) buyGas() error { 171 mgas := st.msg.Gas() 172 if mgas.BitLen() > 64 { 173 return vm.ErrOutOfGas 174 } 175 176 mgval := new(big.Int).Mul(mgas, st.gasPrice) 177 178 var ( 179 state = st.state 180 sender = st.from() 181 ) 182 if state.GetBalance(sender.Address()).Cmp(mgval) < 0 { 183 return errInsufficientBalanceForGas 184 } 185 if err := st.gp.SubGas(mgas); err != nil { 186 return err 187 } 188 st.gas += mgas.Uint64() 189 190 st.initialGas.Set(mgas) 191 state.SubBalance(sender.Address(), mgval) 192 return nil 193 } 194 195 func (st *StateTransition) preCheck() error { 196 msg := st.msg 197 sender := st.from() 198 199 // Make sure this transaction's nonce is correct 200 if msg.CheckNonce() { 201 if n := st.state.GetNonce(sender.Address()); n != msg.Nonce() { 202 return fmt.Errorf("invalid nonce: have %d, expected %d", msg.Nonce(), n) 203 } 204 } 205 return st.buyGas() 206 } 207 208 // TransitionDb will transition the state by applying the current message and returning the result 209 // including the required gas for the operation as well as the used gas. It returns an error if it 210 // failed. An error indicates a consensus issue. 211 func (st *StateTransition) TransitionDb() (ret []byte, requiredGas, usedGas *big.Int, err error) { 212 if err = st.preCheck(); err != nil { 213 return 214 } 215 msg := st.msg 216 sender := st.from() // err checked in preCheck 217 218 homestead := st.evm.ChainConfig().IsHomestead(st.evm.BlockNumber) 219 contractCreation := msg.To() == nil 220 221 // Pay intrinsic gas 222 // TODO convert to uint64 223 intrinsicGas := IntrinsicGas(st.data, contractCreation, homestead) 224 if intrinsicGas.BitLen() > 64 { 225 return nil, nil, nil, vm.ErrOutOfGas 226 } 227 if err = st.useGas(intrinsicGas.Uint64()); err != nil { 228 return nil, nil, nil, err 229 } 230 231 var ( 232 evm = st.evm 233 // vm errors do not effect consensus and are therefor 234 // not assigned to err, except for insufficient balance 235 // error. 236 vmerr error 237 ) 238 if contractCreation { 239 ret, _, st.gas, vmerr = evm.Create(sender, st.data, st.gas, st.value) 240 } else { 241 // Increment the nonce for the next transaction 242 st.state.SetNonce(sender.Address(), st.state.GetNonce(sender.Address())+1) 243 ret, st.gas, vmerr = evm.Call(sender, st.to().Address(), st.data, st.gas, st.value) 244 } 245 if vmerr != nil { 246 log.Debug("VM returned with error", "err", err) 247 // The only possible consensus-error would be if there wasn't 248 // sufficient balance to make the transfer happen. The first 249 // balance transfer may never fail. 250 if vmerr == vm.ErrInsufficientBalance { 251 return nil, nil, nil, vmerr 252 } 253 } 254 requiredGas = new(big.Int).Set(st.gasUsed()) 255 256 st.refundGas() 257 st.state.AddBalance(st.evm.Coinbase, new(big.Int).Mul(st.gasUsed(), st.gasPrice)) 258 259 return ret, requiredGas, st.gasUsed(), err 260 } 261 262 func (st *StateTransition) refundGas() { 263 // Return eth for remaining gas to the sender account, 264 // exchanged at the original rate. 265 sender := st.from() // err already checked 266 remaining := new(big.Int).Mul(new(big.Int).SetUint64(st.gas), st.gasPrice) 267 st.state.AddBalance(sender.Address(), remaining) 268 269 // Apply refund counter, capped to half of the used gas. 270 uhalf := remaining.Div(st.gasUsed(), common.Big2) 271 refund := math.BigMin(uhalf, st.state.GetRefund()) 272 st.gas += refund.Uint64() 273 274 st.state.AddBalance(sender.Address(), refund.Mul(refund, st.gasPrice)) 275 276 // Also return remaining gas to the block gas counter so it is 277 // available for the next transaction. 278 st.gp.AddGas(new(big.Int).SetUint64(st.gas)) 279 } 280 281 func (st *StateTransition) gasUsed() *big.Int { 282 return new(big.Int).Sub(st.initialGas, new(big.Int).SetUint64(st.gas)) 283 }