state_transition.go 7.87 KB
Newer Older
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 6 7 8
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
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 13 14
// GNU Lesser General Public License for more details.
//
// 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

obscuren's avatar
obscuren committed
17
package core
18 19

import (
20
	"errors"
21
	"math/big"
22

obscuren's avatar
obscuren committed
23
	"github.com/ethereum/go-ethereum/common"
24
	"github.com/ethereum/go-ethereum/common/math"
obscuren's avatar
obscuren committed
25
	"github.com/ethereum/go-ethereum/core/vm"
26
	"github.com/ethereum/go-ethereum/log"
27
	"github.com/ethereum/go-ethereum/params"
28 29
)

30
var (
31 32
	Big0                         = big.NewInt(0)
	errInsufficientBalanceForGas = errors.New("insufficient balance to pay for gas")
33 34
)

obscuren's avatar
obscuren committed
35
/*
36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51
The State Transitioning Model

A state transition is a change made when a transaction is applied to the current world state
The state transitioning model does all all the necessary work to work out a valid new state root.

1) Nonce handling
2) Pre pay gas
3) Create a new state object if the recipient is \0*32
4) Value transfer
== If contract creation ==
  4a) Attempt to run transaction data
  4b) If valid, use result as code for the new state object
== end ==
5) Run Script section
6) Derive new state root
*/
52
type StateTransition struct {
53 54 55 56 57 58 59 60
	gp         *GasPool
	msg        Message
	gas        uint64
	gasPrice   *big.Int
	initialGas *big.Int
	value      *big.Int
	data       []byte
	state      vm.StateDB
61
	evm        *vm.EVM
62 63
}

64
// Message represents a message sent to a contract.
65
type Message interface {
66 67
	From() common.Address
	//FromFrontier() (common.Address, error)
68
	To() *common.Address
69 70 71 72 73 74

	GasPrice() *big.Int
	Gas() *big.Int
	Value() *big.Int

	Nonce() uint64
75
	CheckNonce() bool
76
	Data() []byte
77
}
obscuren's avatar
obscuren committed
78

79
// IntrinsicGas computes the 'intrinsic gas' for a message
80
// with the given data.
81 82
//
// TODO convert to uint64
83 84 85
func IntrinsicGas(data []byte, contractCreation, homestead bool) *big.Int {
	igas := new(big.Int)
	if contractCreation && homestead {
86
		igas.SetUint64(params.TxGasContractCreation)
87
	} else {
88
		igas.SetUint64(params.TxGas)
89
	}
90 91 92 93 94 95
	if len(data) > 0 {
		var nz int64
		for _, byt := range data {
			if byt != 0 {
				nz++
			}
obscuren's avatar
obscuren committed
96
		}
97
		m := big.NewInt(nz)
98
		m.Mul(m, new(big.Int).SetUint64(params.TxDataNonZeroGas))
99 100
		igas.Add(igas, m)
		m.SetInt64(int64(len(data)) - nz)
101
		m.Mul(m, new(big.Int).SetUint64(params.TxDataZeroGas))
102
		igas.Add(igas, m)
obscuren's avatar
obscuren committed
103 104 105 106
	}
	return igas
}

107
// NewStateTransition initialises and returns a new state transition object.
108
func NewStateTransition(evm *vm.EVM, msg Message, gp *GasPool) *StateTransition {
109
	return &StateTransition{
110
		gp:         gp,
111
		evm:        evm,
112
		msg:        msg,
113
		gasPrice:   msg.GasPrice(),
114 115 116
		initialGas: new(big.Int),
		value:      msg.Value(),
		data:       msg.Data(),
117
		state:      evm.StateDB,
118
	}
119 120 121 122 123 124 125 126 127
}

// ApplyMessage computes the new state by applying the given message
// against the old state within the environment.
//
// ApplyMessage returns the bytes returned by any EVM execution (if it took place),
// the gas used (which includes gas refunds) and an error if it failed. An error always
// indicates a core error meaning that the message would always fail for that particular
// state and would never be accepted within a block.
128
func ApplyMessage(evm *vm.EVM, msg Message, gp *GasPool) ([]byte, *big.Int, bool, error) {
129
	st := NewStateTransition(evm, msg, gp)
130

131 132
	ret, _, gasUsed, failed, err := st.TransitionDb()
	return ret, gasUsed, failed, err
133 134
}

135 136 137 138
func (st *StateTransition) from() vm.AccountRef {
	f := st.msg.From()
	if !st.state.Exist(f) {
		st.state.CreateAccount(f)
139
	}
140
	return vm.AccountRef(f)
141
}
142

143 144
func (st *StateTransition) to() vm.AccountRef {
	if st.msg == nil {
145
		return vm.AccountRef{}
146
	}
147
	to := st.msg.To()
148
	if to == nil {
149
		return vm.AccountRef{} // contract creation
150
	}
151

152
	reference := vm.AccountRef(*to)
153 154
	if !st.state.Exist(*to) {
		st.state.CreateAccount(*to)
155
	}
156
	return reference
157 158
}

159 160
func (st *StateTransition) useGas(amount uint64) error {
	if st.gas < amount {
161
		return vm.ErrOutOfGas
162
	}
163
	st.gas -= amount
164 165 166 167

	return nil
}

168 169
func (st *StateTransition) buyGas() error {
	mgas := st.msg.Gas()
170 171 172 173
	if mgas.BitLen() > 64 {
		return vm.ErrOutOfGas
	}

174
	mgval := new(big.Int).Mul(mgas, st.gasPrice)
175

176
	var (
177 178
		state  = st.state
		sender = st.from()
179 180 181
	)
	if state.GetBalance(sender.Address()).Cmp(mgval) < 0 {
		return errInsufficientBalanceForGas
182
	}
183
	if err := st.gp.SubGas(mgas); err != nil {
184 185
		return err
	}
186
	st.gas += mgas.Uint64()
187

188
	st.initialGas.Set(mgas)
189
	state.SubBalance(sender.Address(), mgval)
190 191 192
	return nil
}

193 194 195
func (st *StateTransition) preCheck() error {
	msg := st.msg
	sender := st.from()
196 197

	// Make sure this transaction's nonce is correct
198
	if msg.CheckNonce() {
199 200 201 202 203
		nonce := st.state.GetNonce(sender.Address())
		if nonce < msg.Nonce() {
			return ErrNonceTooHigh
		} else if nonce > msg.Nonce() {
			return ErrNonceTooLow
204
		}
205
	}
206
	return st.buyGas()
207 208
}

209 210 211
// TransitionDb will transition the state by applying the current message and returning the result
// including the required gas for the operation as well as the used gas. It returns an error if it
// failed. An error indicates a consensus issue.
212
func (st *StateTransition) TransitionDb() (ret []byte, requiredGas, usedGas *big.Int, failed bool, err error) {
213
	if err = st.preCheck(); err != nil {
214 215
		return
	}
216 217
	msg := st.msg
	sender := st.from() // err checked in preCheck
218

219
	homestead := st.evm.ChainConfig().IsHomestead(st.evm.BlockNumber)
220
	contractCreation := msg.To() == nil
221

obscuren's avatar
obscuren committed
222
	// Pay intrinsic gas
223
	// TODO convert to uint64
224
	intrinsicGas := IntrinsicGas(st.data, contractCreation, homestead)
225
	if intrinsicGas.BitLen() > 64 {
226
		return nil, nil, nil, false, vm.ErrOutOfGas
227
	}
228
	if err = st.useGas(intrinsicGas.Uint64()); err != nil {
229
		return nil, nil, nil, false, err
230 231
	}

232
	var (
233
		evm = st.evm
234 235 236 237 238
		// vm errors do not effect consensus and are therefor
		// not assigned to err, except for insufficient balance
		// error.
		vmerr error
	)
239
	if contractCreation {
240
		ret, _, st.gas, vmerr = evm.Create(sender, st.data, st.gas, st.value)
obscuren's avatar
obscuren committed
241
	} else {
obscuren's avatar
obscuren committed
242
		// Increment the nonce for the next transaction
243 244
		st.state.SetNonce(sender.Address(), st.state.GetNonce(sender.Address())+1)
		ret, st.gas, vmerr = evm.Call(sender, st.to().Address(), st.data, st.gas, st.value)
245
	}
246
	if vmerr != nil {
247
		log.Debug("VM returned with error", "err", vmerr)
248 249 250 251
		// The only possible consensus-error would be if there wasn't
		// sufficient balance to make the transfer happen. The first
		// balance transfer may never fail.
		if vmerr == vm.ErrInsufficientBalance {
252
			return nil, nil, nil, false, vmerr
253
		}
254
	}
255
	requiredGas = new(big.Int).Set(st.gasUsed())
256

257 258
	st.refundGas()
	st.state.AddBalance(st.evm.Coinbase, new(big.Int).Mul(st.gasUsed(), st.gasPrice))
259

260
	return ret, requiredGas, st.gasUsed(), vmerr != nil, err
261
}
obscuren's avatar
obscuren committed
262

263
func (st *StateTransition) refundGas() {
264 265
	// Return eth for remaining gas to the sender account,
	// exchanged at the original rate.
266 267 268
	sender := st.from() // err already checked
	remaining := new(big.Int).Mul(new(big.Int).SetUint64(st.gas), st.gasPrice)
	st.state.AddBalance(sender.Address(), remaining)
269

270
	// Apply refund counter, capped to half of the used gas.
271 272 273
	uhalf := remaining.Div(st.gasUsed(), common.Big2)
	refund := math.BigMin(uhalf, st.state.GetRefund())
	st.gas += refund.Uint64()
274

275
	st.state.AddBalance(sender.Address(), refund.Mul(refund, st.gasPrice))
obscuren's avatar
obscuren committed
276

277 278
	// Also return remaining gas to the block gas counter so it is
	// available for the next transaction.
279
	st.gp.AddGas(new(big.Int).SetUint64(st.gas))
obscuren's avatar
obscuren committed
280 281
}

282 283
func (st *StateTransition) gasUsed() *big.Int {
	return new(big.Int).Sub(st.initialGas, new(big.Int).SetUint64(st.gas))
obscuren's avatar
obscuren committed
284
}