state_transition.go 6.8 KB

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  1. package core
  2. import (
  3. "fmt"
  4. "math/big"
  5. "github.com/ethereum/go-ethereum/crypto"
  6. "github.com/ethereum/go-ethereum/ethutil"
  7. "github.com/ethereum/go-ethereum/state"
  8. "github.com/ethereum/go-ethereum/vm"
  9. )
  10. const tryJit = false
  11. /*
  12. * The State transitioning model
  13. *
  14. * A state transition is a change made when a transaction is applied to the current world state
  15. * The state transitioning model does all all the necessary work to work out a valid new state root.
  16. * 1) Nonce handling
  17. * 2) Pre pay / buy gas of the coinbase (miner)
  18. * 3) Create a new state object if the recipient is \0*32
  19. * 4) Value transfer
  20. * == If contract creation ==
  21. * 4a) Attempt to run transaction data
  22. * 4b) If valid, use result as code for the new state object
  23. * == end ==
  24. * 5) Run Script section
  25. * 6) Derive new state root
  26. */
  27. type StateTransition struct {
  28. coinbase []byte
  29. msg Message
  30. gas, gasPrice *big.Int
  31. initialGas *big.Int
  32. value *big.Int
  33. data []byte
  34. state *state.StateDB
  35. cb, rec, sen *state.StateObject
  36. env vm.Environment
  37. }
  38. type Message interface {
  39. Hash() []byte
  40. From() []byte
  41. To() []byte
  42. GasPrice() *big.Int
  43. Gas() *big.Int
  44. Value() *big.Int
  45. Nonce() uint64
  46. Data() []byte
  47. }
  48. func AddressFromMessage(msg Message) []byte {
  49. // Generate a new address
  50. return crypto.Sha3(ethutil.NewValue([]interface{}{msg.From(), msg.Nonce()}).Encode())[12:]
  51. }
  52. func MessageCreatesContract(msg Message) bool {
  53. return len(msg.To()) == 0
  54. }
  55. func MessageGasValue(msg Message) *big.Int {
  56. return new(big.Int).Mul(msg.Gas(), msg.GasPrice())
  57. }
  58. func NewStateTransition(env vm.Environment, msg Message, coinbase *state.StateObject) *StateTransition {
  59. return &StateTransition{
  60. coinbase: coinbase.Address(),
  61. env: env,
  62. msg: msg,
  63. gas: new(big.Int),
  64. gasPrice: new(big.Int).Set(msg.GasPrice()),
  65. initialGas: new(big.Int),
  66. value: msg.Value(),
  67. data: msg.Data(),
  68. state: env.State(),
  69. cb: coinbase,
  70. }
  71. }
  72. func (self *StateTransition) Coinbase() *state.StateObject {
  73. return self.state.GetOrNewStateObject(self.coinbase)
  74. }
  75. func (self *StateTransition) From() *state.StateObject {
  76. return self.state.GetOrNewStateObject(self.msg.From())
  77. }
  78. func (self *StateTransition) To() *state.StateObject {
  79. if self.msg != nil && MessageCreatesContract(self.msg) {
  80. return nil
  81. }
  82. return self.state.GetOrNewStateObject(self.msg.To())
  83. }
  84. func (self *StateTransition) UseGas(amount *big.Int) error {
  85. if self.gas.Cmp(amount) < 0 {
  86. return OutOfGasError()
  87. }
  88. self.gas.Sub(self.gas, amount)
  89. return nil
  90. }
  91. func (self *StateTransition) AddGas(amount *big.Int) {
  92. self.gas.Add(self.gas, amount)
  93. }
  94. func (self *StateTransition) BuyGas() error {
  95. var err error
  96. sender := self.From()
  97. if sender.Balance().Cmp(MessageGasValue(self.msg)) < 0 {
  98. return fmt.Errorf("insufficient ETH for gas (%x). Req %v, has %v", sender.Address()[:4], MessageGasValue(self.msg), sender.Balance())
  99. }
  100. coinbase := self.Coinbase()
  101. err = coinbase.BuyGas(self.msg.Gas(), self.msg.GasPrice())
  102. if err != nil {
  103. return err
  104. }
  105. self.AddGas(self.msg.Gas())
  106. self.initialGas.Set(self.msg.Gas())
  107. sender.SubAmount(MessageGasValue(self.msg))
  108. return nil
  109. }
  110. func (self *StateTransition) preCheck() (err error) {
  111. var (
  112. msg = self.msg
  113. sender = self.From()
  114. )
  115. // Make sure this transaction's nonce is correct
  116. if sender.Nonce != msg.Nonce() {
  117. return NonceError(msg.Nonce(), sender.Nonce)
  118. }
  119. // Pre-pay gas / Buy gas of the coinbase account
  120. if err = self.BuyGas(); err != nil {
  121. return err
  122. }
  123. return nil
  124. }
  125. func (self *StateTransition) TransitionState() (ret []byte, err error) {
  126. statelogger.Debugf("(~) %x\n", self.msg.Hash())
  127. // XXX Transactions after this point are considered valid.
  128. if err = self.preCheck(); err != nil {
  129. return
  130. }
  131. var (
  132. msg = self.msg
  133. sender = self.From()
  134. )
  135. defer self.RefundGas()
  136. // Increment the nonce for the next transaction
  137. self.state.SetNonce(sender.Address(), sender.Nonce+1)
  138. //sender.Nonce += 1
  139. // Transaction gas
  140. if err = self.UseGas(vm.GasTx); err != nil {
  141. return
  142. }
  143. // Pay data gas
  144. var dgas int64
  145. for _, byt := range self.data {
  146. if byt != 0 {
  147. dgas += vm.GasData.Int64()
  148. } else {
  149. dgas += 1 // This is 1/5. If GasData changes this fails
  150. }
  151. }
  152. if err = self.UseGas(big.NewInt(dgas)); err != nil {
  153. return
  154. }
  155. //stateCopy := self.env.State().Copy()
  156. vmenv := self.env
  157. var ref vm.ContextRef
  158. if MessageCreatesContract(msg) {
  159. contract := MakeContract(msg, self.state)
  160. ret, err, ref = vmenv.Create(sender, contract.Address(), self.msg.Data(), self.gas, self.gasPrice, self.value)
  161. if err == nil {
  162. dataGas := big.NewInt(int64(len(ret)))
  163. dataGas.Mul(dataGas, vm.GasCreateByte)
  164. if err := self.UseGas(dataGas); err == nil {
  165. ref.SetCode(ret)
  166. }
  167. }
  168. /*
  169. if vmenv, ok := vmenv.(*VMEnv); ok && tryJit {
  170. statelogger.Infof("CREATE: re-running using JIT (PH=%x)\n", stateCopy.Root()[:4])
  171. // re-run using the JIT (validation for the JIT)
  172. goodState := vmenv.State().Copy()
  173. vmenv.state = stateCopy
  174. vmenv.SetVmType(vm.JitVmTy)
  175. vmenv.Create(sender, contract.Address(), self.msg.Data(), self.gas, self.gasPrice, self.value)
  176. statelogger.Infof("DONE PH=%x STD_H=%x JIT_H=%x\n", stateCopy.Root()[:4], goodState.Root()[:4], vmenv.State().Root()[:4])
  177. self.state.Set(goodState)
  178. }
  179. */
  180. } else {
  181. ret, err = vmenv.Call(self.From(), self.To().Address(), self.msg.Data(), self.gas, self.gasPrice, self.value)
  182. /*
  183. if vmenv, ok := vmenv.(*VMEnv); ok && tryJit {
  184. statelogger.Infof("CALL: re-running using JIT (PH=%x)\n", stateCopy.Root()[:4])
  185. // re-run using the JIT (validation for the JIT)
  186. goodState := vmenv.State().Copy()
  187. vmenv.state = stateCopy
  188. vmenv.SetVmType(vm.JitVmTy)
  189. vmenv.Call(self.From(), self.To().Address(), self.msg.Data(), self.gas, self.gasPrice, self.value)
  190. statelogger.Infof("DONE PH=%x STD_H=%x JIT_H=%x\n", stateCopy.Root()[:4], goodState.Root()[:4], vmenv.State().Root()[:4])
  191. self.state.Set(goodState)
  192. }
  193. */
  194. }
  195. if err != nil {
  196. self.UseGas(self.gas)
  197. }
  198. return
  199. }
  200. // Converts an transaction in to a state object
  201. func MakeContract(msg Message, state *state.StateDB) *state.StateObject {
  202. addr := AddressFromMessage(msg)
  203. contract := state.GetOrNewStateObject(addr)
  204. contract.InitCode = msg.Data()
  205. return contract
  206. }
  207. func (self *StateTransition) RefundGas() {
  208. coinbase, sender := self.Coinbase(), self.From()
  209. // Return remaining gas
  210. remaining := new(big.Int).Mul(self.gas, self.msg.GasPrice())
  211. sender.AddAmount(remaining)
  212. uhalf := new(big.Int).Div(self.GasUsed(), ethutil.Big2)
  213. for addr, ref := range self.state.Refunds() {
  214. refund := ethutil.BigMin(uhalf, ref)
  215. self.gas.Add(self.gas, refund)
  216. self.state.AddBalance([]byte(addr), refund.Mul(refund, self.msg.GasPrice()))
  217. }
  218. coinbase.RefundGas(self.gas, self.msg.GasPrice())
  219. }
  220. func (self *StateTransition) GasUsed() *big.Int {
  221. return new(big.Int).Sub(self.initialGas, self.gas)
  222. }