706 lines
20 KiB
Go
706 lines
20 KiB
Go
// Copyright 2019 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package vm
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import (
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"fmt"
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"math"
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"sort"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/tracing"
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"github.com/ethereum/go-ethereum/params"
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"github.com/holiman/uint256"
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)
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var activators = map[int]func(*JumpTable){
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5656: enable5656,
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6780: enable6780,
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3855: enable3855,
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3860: enable3860,
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3529: enable3529,
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3198: enable3198,
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2929: enable2929,
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2200: enable2200,
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1884: enable1884,
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1344: enable1344,
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1153: enable1153,
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4762: enable4762,
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}
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// EnableEIP enables the given EIP on the config.
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// This operation writes in-place, and callers need to ensure that the globally
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// defined jump tables are not polluted.
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func EnableEIP(eipNum int, jt *JumpTable) error {
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enablerFn, ok := activators[eipNum]
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if !ok {
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return fmt.Errorf("undefined eip %d", eipNum)
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}
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enablerFn(jt)
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return nil
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}
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func ValidEip(eipNum int) bool {
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_, ok := activators[eipNum]
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return ok
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}
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func ActivateableEips() []string {
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var nums []string
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for k := range activators {
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nums = append(nums, fmt.Sprintf("%d", k))
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}
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sort.Strings(nums)
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return nums
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}
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// enable1884 applies EIP-1884 to the given jump table:
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// - Increase cost of BALANCE to 700
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// - Increase cost of EXTCODEHASH to 700
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// - Increase cost of SLOAD to 800
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// - Define SELFBALANCE, with cost GasFastStep (5)
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func enable1884(jt *JumpTable) {
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// Gas cost changes
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jt[SLOAD].constantGas = params.SloadGasEIP1884
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jt[BALANCE].constantGas = params.BalanceGasEIP1884
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jt[EXTCODEHASH].constantGas = params.ExtcodeHashGasEIP1884
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// New opcode
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jt[SELFBALANCE] = &operation{
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execute: opSelfBalance,
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constantGas: GasFastStep,
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minStack: minStack(0, 1),
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maxStack: maxStack(0, 1),
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}
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}
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func opSelfBalance(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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balance := interpreter.evm.StateDB.GetBalance(scope.Contract.Address())
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scope.Stack.push(balance)
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return nil, nil
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}
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// enable1344 applies EIP-1344 (ChainID Opcode)
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// - Adds an opcode that returns the current chain’s EIP-155 unique identifier
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func enable1344(jt *JumpTable) {
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// New opcode
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jt[CHAINID] = &operation{
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execute: opChainID,
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constantGas: GasQuickStep,
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minStack: minStack(0, 1),
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maxStack: maxStack(0, 1),
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}
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}
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// opChainID implements CHAINID opcode
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func opChainID(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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chainId, _ := uint256.FromBig(interpreter.evm.chainConfig.ChainID)
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scope.Stack.push(chainId)
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return nil, nil
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}
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// enable2200 applies EIP-2200 (Rebalance net-metered SSTORE)
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func enable2200(jt *JumpTable) {
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jt[SLOAD].constantGas = params.SloadGasEIP2200
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jt[SSTORE].dynamicGas = gasSStoreEIP2200
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}
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// enable2929 enables "EIP-2929: Gas cost increases for state access opcodes"
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// https://eips.ethereum.org/EIPS/eip-2929
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func enable2929(jt *JumpTable) {
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jt[SSTORE].dynamicGas = gasSStoreEIP2929
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jt[SLOAD].constantGas = 0
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jt[SLOAD].dynamicGas = gasSLoadEIP2929
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jt[EXTCODECOPY].constantGas = params.WarmStorageReadCostEIP2929
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jt[EXTCODECOPY].dynamicGas = gasExtCodeCopyEIP2929
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jt[EXTCODESIZE].constantGas = params.WarmStorageReadCostEIP2929
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jt[EXTCODESIZE].dynamicGas = gasEip2929AccountCheck
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jt[EXTCODEHASH].constantGas = params.WarmStorageReadCostEIP2929
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jt[EXTCODEHASH].dynamicGas = gasEip2929AccountCheck
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jt[BALANCE].constantGas = params.WarmStorageReadCostEIP2929
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jt[BALANCE].dynamicGas = gasEip2929AccountCheck
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jt[CALL].constantGas = params.WarmStorageReadCostEIP2929
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jt[CALL].dynamicGas = gasCallEIP2929
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jt[CALLCODE].constantGas = params.WarmStorageReadCostEIP2929
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jt[CALLCODE].dynamicGas = gasCallCodeEIP2929
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jt[STATICCALL].constantGas = params.WarmStorageReadCostEIP2929
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jt[STATICCALL].dynamicGas = gasStaticCallEIP2929
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jt[DELEGATECALL].constantGas = params.WarmStorageReadCostEIP2929
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jt[DELEGATECALL].dynamicGas = gasDelegateCallEIP2929
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// This was previously part of the dynamic cost, but we're using it as a constantGas
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// factor here
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jt[SELFDESTRUCT].constantGas = params.SelfdestructGasEIP150
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jt[SELFDESTRUCT].dynamicGas = gasSelfdestructEIP2929
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}
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// enable3529 enabled "EIP-3529: Reduction in refunds":
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// - Removes refunds for selfdestructs
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// - Reduces refunds for SSTORE
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// - Reduces max refunds to 20% gas
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func enable3529(jt *JumpTable) {
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jt[SSTORE].dynamicGas = gasSStoreEIP3529
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jt[SELFDESTRUCT].dynamicGas = gasSelfdestructEIP3529
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}
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// enable3198 applies EIP-3198 (BASEFEE Opcode)
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// - Adds an opcode that returns the current block's base fee.
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func enable3198(jt *JumpTable) {
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// New opcode
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jt[BASEFEE] = &operation{
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execute: opBaseFee,
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constantGas: GasQuickStep,
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minStack: minStack(0, 1),
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maxStack: maxStack(0, 1),
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}
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}
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// enable1153 applies EIP-1153 "Transient Storage"
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// - Adds TLOAD that reads from transient storage
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// - Adds TSTORE that writes to transient storage
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func enable1153(jt *JumpTable) {
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jt[TLOAD] = &operation{
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execute: opTload,
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constantGas: params.WarmStorageReadCostEIP2929,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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jt[TSTORE] = &operation{
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execute: opTstore,
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constantGas: params.WarmStorageReadCostEIP2929,
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minStack: minStack(2, 0),
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maxStack: maxStack(2, 0),
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}
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}
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// opTload implements TLOAD opcode
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func opTload(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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loc := scope.Stack.peek()
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hash := common.Hash(loc.Bytes32())
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val := interpreter.evm.StateDB.GetTransientState(scope.Contract.Address(), hash)
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loc.SetBytes(val.Bytes())
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return nil, nil
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}
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// opTstore implements TSTORE opcode
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func opTstore(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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if interpreter.readOnly {
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return nil, ErrWriteProtection
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}
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loc := scope.Stack.pop()
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val := scope.Stack.pop()
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interpreter.evm.StateDB.SetTransientState(scope.Contract.Address(), loc.Bytes32(), val.Bytes32())
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return nil, nil
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}
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// opBaseFee implements BASEFEE opcode
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func opBaseFee(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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baseFee, _ := uint256.FromBig(interpreter.evm.Context.BaseFee)
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scope.Stack.push(baseFee)
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return nil, nil
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}
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// enable3855 applies EIP-3855 (PUSH0 opcode)
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func enable3855(jt *JumpTable) {
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// New opcode
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jt[PUSH0] = &operation{
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execute: opPush0,
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constantGas: GasQuickStep,
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minStack: minStack(0, 1),
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maxStack: maxStack(0, 1),
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}
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}
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// opPush0 implements the PUSH0 opcode
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func opPush0(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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scope.Stack.push(new(uint256.Int))
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return nil, nil
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}
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// enable3860 enables "EIP-3860: Limit and meter initcode"
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// https://eips.ethereum.org/EIPS/eip-3860
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func enable3860(jt *JumpTable) {
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jt[CREATE].dynamicGas = gasCreateEip3860
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jt[CREATE2].dynamicGas = gasCreate2Eip3860
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}
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// enable5656 enables EIP-5656 (MCOPY opcode)
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// https://eips.ethereum.org/EIPS/eip-5656
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func enable5656(jt *JumpTable) {
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jt[MCOPY] = &operation{
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execute: opMcopy,
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constantGas: GasFastestStep,
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dynamicGas: gasMcopy,
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minStack: minStack(3, 0),
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maxStack: maxStack(3, 0),
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memorySize: memoryMcopy,
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}
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}
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// opMcopy implements the MCOPY opcode (https://eips.ethereum.org/EIPS/eip-5656)
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func opMcopy(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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var (
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dst = scope.Stack.pop()
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src = scope.Stack.pop()
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length = scope.Stack.pop()
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)
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// These values are checked for overflow during memory expansion calculation
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// (the memorySize function on the opcode).
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scope.Memory.Copy(dst.Uint64(), src.Uint64(), length.Uint64())
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return nil, nil
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}
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// opBlobHash implements the BLOBHASH opcode
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func opBlobHash(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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index := scope.Stack.peek()
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if index.LtUint64(uint64(len(interpreter.evm.TxContext.BlobHashes))) {
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blobHash := interpreter.evm.TxContext.BlobHashes[index.Uint64()]
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index.SetBytes32(blobHash[:])
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} else {
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index.Clear()
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}
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return nil, nil
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}
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// opBlobBaseFee implements BLOBBASEFEE opcode
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func opBlobBaseFee(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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blobBaseFee, _ := uint256.FromBig(interpreter.evm.Context.BlobBaseFee)
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scope.Stack.push(blobBaseFee)
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return nil, nil
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}
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// enable4844 applies EIP-4844 (BLOBHASH opcode)
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func enable4844(jt *JumpTable) {
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jt[BLOBHASH] = &operation{
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execute: opBlobHash,
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constantGas: GasFastestStep,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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}
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// enable7516 applies EIP-7516 (BLOBBASEFEE opcode)
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func enable7516(jt *JumpTable) {
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jt[BLOBBASEFEE] = &operation{
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execute: opBlobBaseFee,
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constantGas: GasQuickStep,
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minStack: minStack(0, 1),
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maxStack: maxStack(0, 1),
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}
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}
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// enable6780 applies EIP-6780 (deactivate SELFDESTRUCT)
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func enable6780(jt *JumpTable) {
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jt[SELFDESTRUCT] = &operation{
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execute: opSelfdestruct6780,
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dynamicGas: gasSelfdestructEIP3529,
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constantGas: params.SelfdestructGasEIP150,
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minStack: minStack(1, 0),
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maxStack: maxStack(1, 0),
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}
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}
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func opExtCodeCopyEIP4762(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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var (
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stack = scope.Stack
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a = stack.pop()
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memOffset = stack.pop()
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codeOffset = stack.pop()
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length = stack.pop()
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)
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uint64CodeOffset, overflow := codeOffset.Uint64WithOverflow()
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if overflow {
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uint64CodeOffset = math.MaxUint64
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}
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addr := common.Address(a.Bytes20())
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code := interpreter.evm.StateDB.GetCode(addr)
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contract := &Contract{
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Code: code,
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self: AccountRef(addr),
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}
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paddedCodeCopy, copyOffset, nonPaddedCopyLength := getDataAndAdjustedBounds(code, uint64CodeOffset, length.Uint64())
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statelessGas := interpreter.evm.AccessEvents.CodeChunksRangeGas(addr, copyOffset, nonPaddedCopyLength, uint64(len(contract.Code)), false)
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if !scope.Contract.UseGas(statelessGas, interpreter.evm.Config.Tracer, tracing.GasChangeUnspecified) {
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scope.Contract.Gas = 0
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return nil, ErrOutOfGas
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}
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scope.Memory.Set(memOffset.Uint64(), length.Uint64(), paddedCodeCopy)
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return nil, nil
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}
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// opPush1EIP4762 handles the special case of PUSH1 opcode for EIP-4762, which
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// need not worry about the adjusted bound logic when adding the PUSHDATA to
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// the list of access events.
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func opPush1EIP4762(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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var (
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codeLen = uint64(len(scope.Contract.Code))
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integer = new(uint256.Int)
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)
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*pc += 1
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if *pc < codeLen {
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scope.Stack.push(integer.SetUint64(uint64(scope.Contract.Code[*pc])))
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if !scope.Contract.IsDeployment && *pc%31 == 0 {
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// touch next chunk if PUSH1 is at the boundary. if so, *pc has
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// advanced past this boundary.
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contractAddr := scope.Contract.Address()
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statelessGas := interpreter.evm.AccessEvents.CodeChunksRangeGas(contractAddr, *pc+1, uint64(1), uint64(len(scope.Contract.Code)), false)
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if !scope.Contract.UseGas(statelessGas, interpreter.evm.Config.Tracer, tracing.GasChangeUnspecified) {
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scope.Contract.Gas = 0
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return nil, ErrOutOfGas
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}
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}
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} else {
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scope.Stack.push(integer.Clear())
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}
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return nil, nil
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}
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func makePushEIP4762(size uint64, pushByteSize int) executionFunc {
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return func(pc *uint64, interpreter *EVMInterpreter, scope *ScopeContext) ([]byte, error) {
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var (
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codeLen = len(scope.Contract.Code)
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start = min(codeLen, int(*pc+1))
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end = min(codeLen, start+pushByteSize)
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)
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scope.Stack.push(new(uint256.Int).SetBytes(
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common.RightPadBytes(
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scope.Contract.Code[start:end],
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pushByteSize,
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)),
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)
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if !scope.Contract.IsDeployment {
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contractAddr := scope.Contract.Address()
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statelessGas := interpreter.evm.AccessEvents.CodeChunksRangeGas(contractAddr, uint64(start), uint64(pushByteSize), uint64(len(scope.Contract.Code)), false)
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if !scope.Contract.UseGas(statelessGas, interpreter.evm.Config.Tracer, tracing.GasChangeUnspecified) {
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scope.Contract.Gas = 0
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return nil, ErrOutOfGas
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}
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}
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*pc += size
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return nil, nil
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}
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}
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func enable4762(jt *JumpTable) {
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jt[SSTORE] = &operation{
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dynamicGas: gasSStore4762,
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execute: opSstore,
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minStack: minStack(2, 0),
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maxStack: maxStack(2, 0),
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}
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jt[SLOAD] = &operation{
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dynamicGas: gasSLoad4762,
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execute: opSload,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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jt[BALANCE] = &operation{
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execute: opBalance,
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dynamicGas: gasBalance4762,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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jt[EXTCODESIZE] = &operation{
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execute: opExtCodeSize,
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dynamicGas: gasExtCodeSize4762,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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jt[EXTCODEHASH] = &operation{
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execute: opExtCodeHash,
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dynamicGas: gasExtCodeHash4762,
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minStack: minStack(1, 1),
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maxStack: maxStack(1, 1),
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}
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jt[EXTCODECOPY] = &operation{
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execute: opExtCodeCopyEIP4762,
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dynamicGas: gasExtCodeCopyEIP4762,
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minStack: minStack(4, 0),
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maxStack: maxStack(4, 0),
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memorySize: memoryExtCodeCopy,
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}
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jt[CODECOPY] = &operation{
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execute: opCodeCopy,
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constantGas: GasFastestStep,
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dynamicGas: gasCodeCopyEip4762,
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minStack: minStack(3, 0),
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maxStack: maxStack(3, 0),
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memorySize: memoryCodeCopy,
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}
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jt[SELFDESTRUCT] = &operation{
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execute: opSelfdestruct6780,
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dynamicGas: gasSelfdestructEIP4762,
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constantGas: params.SelfdestructGasEIP150,
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minStack: minStack(1, 0),
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maxStack: maxStack(1, 0),
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}
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jt[CREATE] = &operation{
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execute: opCreate,
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constantGas: params.CreateNGasEip4762,
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dynamicGas: gasCreateEip3860,
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minStack: minStack(3, 1),
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maxStack: maxStack(3, 1),
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memorySize: memoryCreate,
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}
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jt[CREATE2] = &operation{
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execute: opCreate2,
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constantGas: params.CreateNGasEip4762,
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dynamicGas: gasCreate2Eip3860,
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minStack: minStack(4, 1),
|
||
maxStack: maxStack(4, 1),
|
||
memorySize: memoryCreate2,
|
||
}
|
||
|
||
jt[CALL] = &operation{
|
||
execute: opCall,
|
||
dynamicGas: gasCallEIP4762,
|
||
minStack: minStack(7, 1),
|
||
maxStack: maxStack(7, 1),
|
||
memorySize: memoryCall,
|
||
}
|
||
|
||
jt[CALLCODE] = &operation{
|
||
execute: opCallCode,
|
||
dynamicGas: gasCallCodeEIP4762,
|
||
minStack: minStack(7, 1),
|
||
maxStack: maxStack(7, 1),
|
||
memorySize: memoryCall,
|
||
}
|
||
|
||
jt[STATICCALL] = &operation{
|
||
execute: opStaticCall,
|
||
dynamicGas: gasStaticCallEIP4762,
|
||
minStack: minStack(6, 1),
|
||
maxStack: maxStack(6, 1),
|
||
memorySize: memoryStaticCall,
|
||
}
|
||
|
||
jt[DELEGATECALL] = &operation{
|
||
execute: opDelegateCall,
|
||
dynamicGas: gasDelegateCallEIP4762,
|
||
minStack: minStack(6, 1),
|
||
maxStack: maxStack(6, 1),
|
||
memorySize: memoryDelegateCall,
|
||
}
|
||
|
||
jt[PUSH1] = &operation{
|
||
execute: opPush1EIP4762,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 1),
|
||
maxStack: maxStack(0, 1),
|
||
}
|
||
for i := 1; i < 32; i++ {
|
||
jt[PUSH1+OpCode(i)] = &operation{
|
||
execute: makePushEIP4762(uint64(i+1), i+1),
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 1),
|
||
maxStack: maxStack(0, 1),
|
||
}
|
||
}
|
||
}
|
||
|
||
// enableEOF applies the EOF changes.
|
||
// OBS! For EOF, there are two changes:
|
||
// 1. Two separate jumptables are required. One, EOF-jumptable, is used by
|
||
// eof contracts. This one contains things like RJUMP.
|
||
// 2. The regular non-eof jumptable also needs to be modified, specifically to
|
||
// modify how EXTCODECOPY works under the hood.
|
||
//
|
||
// This method _only_ deals with case 1.
|
||
func enableEOF(jt *JumpTable) {
|
||
// Deprecate opcodes
|
||
undefined := &operation{
|
||
execute: opUndefined,
|
||
constantGas: 0,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
undefined: true,
|
||
}
|
||
jt[CALL] = undefined
|
||
jt[CALLCODE] = undefined
|
||
jt[DELEGATECALL] = undefined
|
||
jt[STATICCALL] = undefined
|
||
jt[SELFDESTRUCT] = undefined
|
||
jt[JUMP] = undefined
|
||
jt[JUMPI] = undefined
|
||
jt[PC] = undefined
|
||
jt[CREATE] = undefined
|
||
jt[CREATE2] = undefined
|
||
jt[CODESIZE] = undefined
|
||
jt[CODECOPY] = undefined
|
||
jt[EXTCODESIZE] = undefined
|
||
jt[EXTCODECOPY] = undefined
|
||
jt[EXTCODEHASH] = undefined
|
||
jt[GAS] = undefined
|
||
// Allow 0xFE to terminate sections
|
||
jt[INVALID] = &operation{
|
||
execute: opUndefined,
|
||
constantGas: 0,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
|
||
// New opcodes
|
||
jt[RJUMP] = &operation{
|
||
execute: opRjump,
|
||
constantGas: GasQuickStep,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
jt[RJUMPI] = &operation{
|
||
execute: opRjumpi,
|
||
constantGas: GasFastishStep,
|
||
minStack: minStack(1, 0),
|
||
maxStack: maxStack(1, 0),
|
||
}
|
||
jt[RJUMPV] = &operation{
|
||
execute: opRjumpv,
|
||
constantGas: GasFastishStep,
|
||
minStack: minStack(1, 0),
|
||
maxStack: maxStack(1, 0),
|
||
}
|
||
jt[CALLF] = &operation{
|
||
execute: opCallf,
|
||
constantGas: GasFastStep,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
jt[RETF] = &operation{
|
||
execute: opRetf,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
jt[JUMPF] = &operation{
|
||
execute: opJumpf,
|
||
constantGas: GasFastStep,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
jt[EOFCREATE] = &operation{
|
||
execute: opEOFCreate,
|
||
constantGas: params.Create2Gas,
|
||
dynamicGas: gasEOFCreate,
|
||
minStack: minStack(4, 1),
|
||
maxStack: maxStack(4, 1),
|
||
memorySize: memoryEOFCreate,
|
||
}
|
||
jt[RETURNCONTRACT] = &operation{
|
||
execute: opReturnContract,
|
||
// returncontract has zero constant gas cost
|
||
dynamicGas: pureMemoryGascost,
|
||
minStack: minStack(2, 0),
|
||
maxStack: maxStack(2, 0),
|
||
memorySize: memoryReturnContract,
|
||
}
|
||
jt[DATALOAD] = &operation{
|
||
execute: opDataLoad,
|
||
constantGas: GasFastishStep,
|
||
minStack: minStack(1, 1),
|
||
maxStack: maxStack(1, 1),
|
||
}
|
||
jt[DATALOADN] = &operation{
|
||
execute: opDataLoadN,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 1),
|
||
maxStack: maxStack(0, 1),
|
||
}
|
||
jt[DATASIZE] = &operation{
|
||
execute: opDataSize,
|
||
constantGas: GasQuickStep,
|
||
minStack: minStack(0, 1),
|
||
maxStack: maxStack(0, 1),
|
||
}
|
||
jt[DATACOPY] = &operation{
|
||
execute: opDataCopy,
|
||
constantGas: GasFastestStep,
|
||
dynamicGas: memoryCopierGas(2),
|
||
minStack: minStack(3, 0),
|
||
maxStack: maxStack(3, 0),
|
||
memorySize: memoryDataCopy,
|
||
}
|
||
jt[DUPN] = &operation{
|
||
execute: opDupN,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 1),
|
||
maxStack: maxStack(0, 1),
|
||
}
|
||
jt[SWAPN] = &operation{
|
||
execute: opSwapN,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
jt[EXCHANGE] = &operation{
|
||
execute: opExchange,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(0, 0),
|
||
maxStack: maxStack(0, 0),
|
||
}
|
||
jt[RETURNDATALOAD] = &operation{
|
||
execute: opReturnDataLoad,
|
||
constantGas: GasFastestStep,
|
||
minStack: minStack(1, 1),
|
||
maxStack: maxStack(1, 1),
|
||
}
|
||
jt[EXTCALL] = &operation{
|
||
execute: opExtCall,
|
||
constantGas: params.WarmStorageReadCostEIP2929,
|
||
dynamicGas: makeCallVariantGasCallEIP2929(gasExtCall, 0),
|
||
minStack: minStack(4, 1),
|
||
maxStack: maxStack(4, 1),
|
||
memorySize: memoryExtCall,
|
||
}
|
||
jt[EXTDELEGATECALL] = &operation{
|
||
execute: opExtDelegateCall,
|
||
dynamicGas: makeCallVariantGasCallEIP2929(gasExtDelegateCall, 0),
|
||
constantGas: params.WarmStorageReadCostEIP2929,
|
||
minStack: minStack(3, 1),
|
||
maxStack: maxStack(3, 1),
|
||
memorySize: memoryExtCall,
|
||
}
|
||
jt[EXTSTATICCALL] = &operation{
|
||
execute: opExtStaticCall,
|
||
constantGas: params.WarmStorageReadCostEIP2929,
|
||
dynamicGas: makeCallVariantGasCallEIP2929(gasExtStaticCall, 0),
|
||
minStack: minStack(3, 1),
|
||
maxStack: maxStack(3, 1),
|
||
memorySize: memoryExtCall,
|
||
}
|
||
}
|