forked from cerc-io/plugeth
core: implement EIP-3651, warm coinbase (#25819)
Implements EIP-3651, "Warm Coinbase", for Shanghai hardfork. Specification: https://eips.ethereum.org/EIPS/eip-3651.
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@ -4187,3 +4187,111 @@ func TestTransientStorageReset(t *testing.T) {
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t.Fatalf("Unexpected dirty storage slot")
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}
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}
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func TestEIP3651(t *testing.T) {
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var (
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aa = common.HexToAddress("0x000000000000000000000000000000000000aaaa")
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bb = common.HexToAddress("0x000000000000000000000000000000000000bbbb")
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engine = ethash.NewFaker()
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// A sender who makes transactions, has some funds
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key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
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key2, _ = crypto.HexToECDSA("8a1f9a8f95be41cd7ccb6168179afb4504aefe388d1e14474d32c45c72ce7b7a")
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addr1 = crypto.PubkeyToAddress(key1.PublicKey)
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addr2 = crypto.PubkeyToAddress(key2.PublicKey)
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funds = new(big.Int).Mul(common.Big1, big.NewInt(params.Ether))
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gspec = &Genesis{
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Config: params.AllEthashProtocolChanges,
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Alloc: GenesisAlloc{
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addr1: {Balance: funds},
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addr2: {Balance: funds},
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// The address 0xAAAA sloads 0x00 and 0x01
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aa: {
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Code: []byte{
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byte(vm.PC),
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byte(vm.PC),
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byte(vm.SLOAD),
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byte(vm.SLOAD),
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},
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Nonce: 0,
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Balance: big.NewInt(0),
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},
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// The address 0xBBBB calls 0xAAAA
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bb: {
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Code: []byte{
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byte(vm.PUSH1), 0, // out size
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byte(vm.DUP1), // out offset
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byte(vm.DUP1), // out insize
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byte(vm.DUP1), // in offset
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byte(vm.PUSH2), // address
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byte(0xaa),
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byte(0xaa),
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byte(vm.GAS), // gas
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byte(vm.DELEGATECALL),
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},
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Nonce: 0,
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Balance: big.NewInt(0),
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},
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},
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}
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)
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gspec.Config.BerlinBlock = common.Big0
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gspec.Config.LondonBlock = common.Big0
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gspec.Config.ShanghaiBlock = common.Big0
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signer := types.LatestSigner(gspec.Config)
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_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
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b.SetCoinbase(aa)
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// One transaction to Coinbase
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txdata := &types.DynamicFeeTx{
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ChainID: gspec.Config.ChainID,
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Nonce: 0,
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To: &bb,
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Gas: 500000,
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GasFeeCap: newGwei(5),
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GasTipCap: big.NewInt(2),
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AccessList: nil,
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Data: []byte{},
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}
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tx := types.NewTx(txdata)
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tx, _ = types.SignTx(tx, signer, key1)
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b.AddTx(tx)
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})
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chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{Tracer: logger.NewMarkdownLogger(&logger.Config{}, os.Stderr)}, nil, nil)
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if err != nil {
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t.Fatalf("failed to create tester chain: %v", err)
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}
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if n, err := chain.InsertChain(blocks); err != nil {
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t.Fatalf("block %d: failed to insert into chain: %v", n, err)
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}
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block := chain.GetBlockByNumber(1)
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// 1+2: Ensure EIP-1559 access lists are accounted for via gas usage.
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innerGas := vm.GasQuickStep*2 + params.ColdSloadCostEIP2929*2
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expectedGas := params.TxGas + 5*vm.GasFastestStep + vm.GasQuickStep + 100 + innerGas // 100 because 0xaaaa is in access list
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if block.GasUsed() != expectedGas {
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t.Fatalf("incorrect amount of gas spent: expected %d, got %d", expectedGas, block.GasUsed())
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}
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state, _ := chain.State()
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// 3: Ensure that miner received only the tx's tip.
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actual := state.GetBalance(block.Coinbase())
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expected := new(big.Int).Add(
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new(big.Int).SetUint64(block.GasUsed()*block.Transactions()[0].GasTipCap().Uint64()),
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ethash.ConstantinopleBlockReward,
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)
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if actual.Cmp(expected) != 0 {
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t.Fatalf("miner balance incorrect: expected %d, got %d", expected, actual)
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}
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// 4: Ensure the tx sender paid for the gasUsed * (tip + block baseFee).
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actual = new(big.Int).Sub(funds, state.GetBalance(addr1))
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expected = new(big.Int).SetUint64(block.GasUsed() * (block.Transactions()[0].GasTipCap().Uint64() + block.BaseFee().Uint64()))
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if actual.Cmp(expected) != 0 {
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t.Fatalf("sender balance incorrect: expected %d, got %d", expected, actual)
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}
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}
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@ -1067,26 +1067,32 @@ func (s *StateDB) Commit(deleteEmptyObjects bool) (common.Hash, error) {
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// - Add the contents of the optional tx access list (2930)
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//
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// Potential EIPs:
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// - Reset transient storage(1153)
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func (s *StateDB) Prepare(rules params.Rules, sender common.Address, dst *common.Address, precompiles []common.Address, list types.AccessList) {
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// - Reset access list (Berlin)
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// - Add coinbase to access list (EIP-3651)
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// - Reset transient storage (EIP-1153)
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func (s *StateDB) Prepare(rules params.Rules, sender, coinbase common.Address, dst *common.Address, precompiles []common.Address, list types.AccessList) {
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if rules.IsBerlin {
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// Clear out any leftover from previous executions
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s.accessList = newAccessList()
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al := newAccessList()
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s.accessList = al
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s.AddAddressToAccessList(sender)
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al.AddAddress(sender)
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if dst != nil {
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s.AddAddressToAccessList(*dst)
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al.AddAddress(*dst)
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// If it's a create-tx, the destination will be added inside evm.create
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}
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for _, addr := range precompiles {
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s.AddAddressToAccessList(addr)
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al.AddAddress(addr)
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}
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for _, el := range list {
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s.AddAddressToAccessList(el.Address)
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al.AddAddress(el.Address)
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for _, key := range el.StorageKeys {
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s.AddSlotToAccessList(el.Address, key)
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al.AddSlot(el.Address, key)
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}
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}
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if rules.IsShanghai { // EIP-3651: warm coinbase
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al.AddAddress(coinbase)
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}
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}
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// Reset transient storage at the beginning of transaction execution
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s.transientStorage = newTransientStorage()
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@ -322,7 +322,7 @@ func (st *StateTransition) TransitionDb() (*ExecutionResult, error) {
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// Execute the preparatory steps for state transition which includes:
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// - prepare accessList(post-berlin)
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// - reset transient storage(eip 1153)
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st.state.Prepare(rules, msg.From(), msg.To(), vm.ActivePrecompiles(rules), msg.AccessList())
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st.state.Prepare(rules, msg.From(), st.evm.Context.Coinbase, msg.To(), vm.ActivePrecompiles(rules), msg.AccessList())
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var (
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ret []byte
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@ -69,7 +69,7 @@ type StateDB interface {
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// AddSlotToAccessList adds the given (address,slot) to the access list. This operation is safe to perform
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// even if the feature/fork is not active yet
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AddSlotToAccessList(addr common.Address, slot common.Hash)
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Prepare(rules params.Rules, sender common.Address, dest *common.Address, precompiles []common.Address, txAccesses types.AccessList)
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Prepare(rules params.Rules, sender, coinbase common.Address, dest *common.Address, precompiles []common.Address, txAccesses types.AccessList)
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RevertToSnapshot(int)
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Snapshot() int
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@ -122,7 +122,7 @@ func Execute(code, input []byte, cfg *Config) ([]byte, *state.StateDB, error) {
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// Execute the preparatory steps for state transition which includes:
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// - prepare accessList(post-berlin)
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// - reset transient storage(eip 1153)
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cfg.State.Prepare(rules, cfg.Origin, &address, vm.ActivePrecompiles(rules), nil)
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cfg.State.Prepare(rules, cfg.Origin, cfg.Coinbase, &address, vm.ActivePrecompiles(rules), nil)
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cfg.State.CreateAccount(address)
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// set the receiver's (the executing contract) code for execution.
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@ -156,7 +156,7 @@ func Create(input []byte, cfg *Config) ([]byte, common.Address, uint64, error) {
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// Execute the preparatory steps for state transition which includes:
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// - prepare accessList(post-berlin)
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// - reset transient storage(eip 1153)
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cfg.State.Prepare(rules, cfg.Origin, nil, vm.ActivePrecompiles(rules), nil)
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cfg.State.Prepare(rules, cfg.Origin, cfg.Coinbase, nil, vm.ActivePrecompiles(rules), nil)
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// Call the code with the given configuration.
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code, address, leftOverGas, err := vmenv.Create(
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@ -185,7 +185,7 @@ func Call(address common.Address, input []byte, cfg *Config) ([]byte, uint64, er
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// Execute the preparatory steps for state transition which includes:
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// - prepare accessList(post-berlin)
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// - reset transient storage(eip 1153)
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statedb.Prepare(rules, cfg.Origin, &address, vm.ActivePrecompiles(rules), nil)
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statedb.Prepare(rules, cfg.Origin, cfg.Coinbase, &address, vm.ActivePrecompiles(rules), nil)
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// Call the code with the given configuration.
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ret, leftOverGas, err := vmenv.Call(
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@ -241,7 +241,7 @@ func runBenchmark(b *testing.B, t *StateTest) {
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b.ResetTimer()
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for n := 0; n < b.N; n++ {
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snapshot := statedb.Snapshot()
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statedb.Prepare(rules, msg.From(), msg.To(), vm.ActivePrecompiles(rules), msg.AccessList())
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statedb.Prepare(rules, msg.From(), context.Coinbase, msg.To(), vm.ActivePrecompiles(rules), msg.AccessList())
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b.StartTimer()
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start := time.Now()
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