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@@ -212,12 +212,12 @@ func (evm *EVM) Call(caller ContractRef, addr common.Address, input []byte, gas
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evm.StateDB.CreateAccount(addr)
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}
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evm.Transfer(evm.StateDB, caller.Address(), to.Address(), value)
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-
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// Initialise a new contract and set the code that is to be used by the EVM.
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// The contract is a scoped environment for this execution context only.
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contract := NewContract(caller, to, value, gas)
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contract.SetCallCode(&addr, evm.StateDB.GetCodeHash(addr), evm.StateDB.GetCode(addr))
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+ // Even if the account has no code, we need to continue because it might be a precompile
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start := time.Now()
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// Capture the tracer start/end events in debug mode
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@@ -352,8 +352,20 @@ func (evm *EVM) StaticCall(caller ContractRef, addr common.Address, input []byte
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return ret, contract.Gas, err
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}
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+type codeAndHash struct {
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+ code []byte
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+ hash common.Hash
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+}
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+
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+func (c *codeAndHash) Hash() common.Hash {
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+ if c.hash == (common.Hash{}) {
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+ c.hash = crypto.Keccak256Hash(c.code)
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+ }
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+ return c.hash
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+}
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+
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// create creates a new contract using code as deployment code.
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-func (evm *EVM) create(caller ContractRef, code []byte, gas uint64, value *big.Int, address common.Address) ([]byte, common.Address, uint64, error) {
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+func (evm *EVM) create(caller ContractRef, codeAndHash *codeAndHash, gas uint64, value *big.Int, address common.Address) ([]byte, common.Address, uint64, error) {
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// Depth check execution. Fail if we're trying to execute above the
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// limit.
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if evm.depth > int(params.CallCreateDepth) {
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@@ -382,14 +394,14 @@ func (evm *EVM) create(caller ContractRef, code []byte, gas uint64, value *big.I
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// EVM. The contract is a scoped environment for this execution context
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// only.
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contract := NewContract(caller, AccountRef(address), value, gas)
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- contract.SetCallCode(&address, crypto.Keccak256Hash(code), code)
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+ contract.SetCodeOptionalHash(&address, codeAndHash)
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if evm.vmConfig.NoRecursion && evm.depth > 0 {
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return nil, address, gas, nil
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}
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if evm.vmConfig.Debug && evm.depth == 0 {
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- evm.vmConfig.Tracer.CaptureStart(caller.Address(), address, true, code, gas, value)
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+ evm.vmConfig.Tracer.CaptureStart(caller.Address(), address, true, codeAndHash.code, gas, value)
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}
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start := time.Now()
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@@ -433,7 +445,7 @@ func (evm *EVM) create(caller ContractRef, code []byte, gas uint64, value *big.I
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// Create creates a new contract using code as deployment code.
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func (evm *EVM) Create(caller ContractRef, code []byte, gas uint64, value *big.Int) (ret []byte, contractAddr common.Address, leftOverGas uint64, err error) {
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contractAddr = crypto.CreateAddress(caller.Address(), evm.StateDB.GetNonce(caller.Address()))
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- return evm.create(caller, code, gas, value, contractAddr)
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+ return evm.create(caller, &codeAndHash{code: code}, gas, value, contractAddr)
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}
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// Create2 creates a new contract using code as deployment code.
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@@ -441,8 +453,9 @@ func (evm *EVM) Create(caller ContractRef, code []byte, gas uint64, value *big.I
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// The different between Create2 with Create is Create2 uses sha3(0xff ++ msg.sender ++ salt ++ sha3(init_code))[12:]
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// instead of the usual sender-and-nonce-hash as the address where the contract is initialized at.
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func (evm *EVM) Create2(caller ContractRef, code []byte, gas uint64, endowment *big.Int, salt *big.Int) (ret []byte, contractAddr common.Address, leftOverGas uint64, err error) {
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- contractAddr = crypto.CreateAddress2(caller.Address(), common.BigToHash(salt), code)
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- return evm.create(caller, code, gas, endowment, contractAddr)
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+ codeAndHash := &codeAndHash{code: code}
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+ contractAddr = crypto.CreateAddress2(caller.Address(), common.BigToHash(salt), codeAndHash.Hash().Bytes())
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+ return evm.create(caller, codeAndHash, gas, endowment, contractAddr)
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}
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// ChainConfig returns the environment's chain configuration
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