mirror of
https://github.com/ethereum/go-ethereum.git
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505 lines
16 KiB
Go
505 lines
16 KiB
Go
// Copyright 2017 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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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/common/math"
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"github.com/ethereum/go-ethereum/params"
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)
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// memoryGasCosts calculates the quadratic gas for memory expansion. It does so
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// only for the memory region that is expanded, not the total memory.
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func memoryGasCost(mem *Memory, newMemSize uint64) (uint64, error) {
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if newMemSize == 0 {
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return 0, nil
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}
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// The maximum that will fit in a uint64 is max_word_count - 1
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// anything above that will result in an overflow.
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// Additionally, a newMemSize which results in a
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// newMemSizeWords larger than 0x7ffffffff will cause the square operation
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// to overflow.
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// The constant 0xffffffffe0 is the highest number that can be used without
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// overflowing the gas calculation
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if newMemSize > 0xffffffffe0 {
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return 0, errGasUintOverflow
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}
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newMemSizeWords := toWordSize(newMemSize)
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newMemSize = newMemSizeWords * 32
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if newMemSize > uint64(mem.Len()) {
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square := newMemSizeWords * newMemSizeWords
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linCoef := newMemSizeWords * params.MemoryGas
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quadCoef := square / params.QuadCoeffDiv
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newTotalFee := linCoef + quadCoef
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fee := newTotalFee - mem.lastGasCost
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mem.lastGasCost = newTotalFee
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return fee, nil
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}
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return 0, nil
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}
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func constGasFunc(gas uint64) gasFunc {
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return func(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return gas, nil
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}
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}
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func gasCallDataCopy(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, GasFastestStep); overflow {
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return 0, errGasUintOverflow
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}
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words, overflow := bigUint64(stack.Back(2))
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if overflow {
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return 0, errGasUintOverflow
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}
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if words, overflow = math.SafeMul(toWordSize(words), params.CopyGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, words); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasReturnDataCopy(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, GasFastestStep); overflow {
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return 0, errGasUintOverflow
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}
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words, overflow := bigUint64(stack.Back(2))
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if overflow {
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return 0, errGasUintOverflow
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}
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if words, overflow = math.SafeMul(toWordSize(words), params.CopyGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, words); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasSStore(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var (
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y, x = stack.Back(1), stack.Back(0)
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value, dirty = evm.StateDB.GetState(contract.Address(), common.BigToHash(x))
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)
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// The legacy gas metering only takes into consideration the current state
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if !evm.chainRules.IsConstantinople {
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// This checks for 3 scenario's and calculates gas accordingly
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// 1. From a zero-value address to a non-zero value (NEW VALUE)
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// 2. From a non-zero value address to a zero-value address (DELETE)
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// 3. From a non-zero to a non-zero (CHANGE)
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switch {
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case value == (common.Hash{}) && y.Sign() != 0: // 0 => non 0
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return params.SstoreSetGas, nil
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case value != (common.Hash{}) && y.Sign() == 0: // non 0 => 0
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evm.StateDB.AddRefund(params.SstoreRefundGas)
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return params.SstoreClearGas, nil
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default: // non 0 => non 0 (or 0 => 0)
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return params.SstoreResetGas, nil
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}
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}
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// The new gas metering is based on net gas costs (EIP-1087)
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//
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// 0. A ‘dirty map’ for each transaction is maintained, tracking all storage
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// slots in all contracts that have been modified in the current transaction.
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// The dirty map is scoped in the same manner as updates to storage, meaning
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// that changes to the dirty map in a call that later reverts are not retained.
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// 1. When a storage slot is written to with the value it already contains, 200
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// gas is deducted, but is not explicitly marked dirty.
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// 2. When a storage slot’s value is changed for the first time, the slot is
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// marked as dirty. If the slot was previously set to 0, 20000 gas is deducted;
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// otherwise, 5000 gas is deducted.
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// 2. When a storage slot that is already in the dirty map is written to, 200
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// gas is deducted.
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// 3. At the end of the transaction, for each slot in the dirty map:
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// * If the slot was 0 before the transaction and is 0 now, refund 19800 gas.
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// * If the slot was nonzero before the transaction and its value has not changed, refund 4800 gas.
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// * If the slot was nonzero before the transaction and is 0 now, refund 10000 gas.
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switch {
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case value == common.BigToHash(y): // noop
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return params.NetSstoreNoopGas, nil
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case !dirty && y.Sign() != 0 && value == (common.Hash{}): // clean(0) => anything
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return params.NetSstoreCleanInitgas, nil
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case !dirty && y.Sign() != 0: // clean(non 0) => anything
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return params.NetSstoreCleanUpdateGas, nil
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default: // dirty(anything) => anything
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return params.NetSstoreDirtyGas, nil
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}
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}
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func makeGasLog(n uint64) gasFunc {
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return func(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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requestedSize, overflow := bigUint64(stack.Back(1))
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if overflow {
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return 0, errGasUintOverflow
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}
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, params.LogGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, n*params.LogTopicGas); overflow {
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return 0, errGasUintOverflow
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}
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var memorySizeGas uint64
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if memorySizeGas, overflow = math.SafeMul(requestedSize, params.LogDataGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, memorySizeGas); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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}
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func gasSha3(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var overflow bool
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, params.Sha3Gas); overflow {
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return 0, errGasUintOverflow
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}
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wordGas, overflow := bigUint64(stack.Back(1))
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if overflow {
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return 0, errGasUintOverflow
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}
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if wordGas, overflow = math.SafeMul(toWordSize(wordGas), params.Sha3WordGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, wordGas); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasCodeCopy(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, GasFastestStep); overflow {
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return 0, errGasUintOverflow
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}
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wordGas, overflow := bigUint64(stack.Back(2))
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if overflow {
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return 0, errGasUintOverflow
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}
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if wordGas, overflow = math.SafeMul(toWordSize(wordGas), params.CopyGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, wordGas); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasExtCodeCopy(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, gt.ExtcodeCopy); overflow {
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return 0, errGasUintOverflow
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}
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wordGas, overflow := bigUint64(stack.Back(3))
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if overflow {
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return 0, errGasUintOverflow
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}
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if wordGas, overflow = math.SafeMul(toWordSize(wordGas), params.CopyGas); overflow {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, wordGas); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasExtCodeHash(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return gt.ExtcodeHash, nil
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}
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func gasMLoad(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var overflow bool
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, GasFastestStep); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasMStore8(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var overflow bool
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, GasFastestStep); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasMStore(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var overflow bool
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, errGasUintOverflow
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}
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if gas, overflow = math.SafeAdd(gas, GasFastestStep); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasCreate(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var overflow bool
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, params.CreateGas); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasCreate2(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var overflow bool
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, params.Create2Gas); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasBalance(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return gt.Balance, nil
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}
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func gasExtCodeSize(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return gt.ExtcodeSize, nil
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}
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func gasSLoad(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return gt.SLoad, nil
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}
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func gasExp(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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expByteLen := uint64((stack.data[stack.len()-2].BitLen() + 7) / 8)
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var (
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gas = expByteLen * gt.ExpByte // no overflow check required. Max is 256 * ExpByte gas
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overflow bool
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)
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if gas, overflow = math.SafeAdd(gas, GasSlowStep); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasCall(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var (
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gas = gt.Calls
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transfersValue = stack.Back(2).Sign() != 0
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address = common.BigToAddress(stack.Back(1))
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eip158 = evm.ChainConfig().IsEIP158(evm.BlockNumber)
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)
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if eip158 {
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if transfersValue && evm.StateDB.Empty(address) {
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gas += params.CallNewAccountGas
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}
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} else if !evm.StateDB.Exist(address) {
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gas += params.CallNewAccountGas
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}
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if transfersValue {
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gas += params.CallValueTransferGas
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}
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memoryGas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, memoryGas); overflow {
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return 0, errGasUintOverflow
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}
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evm.callGasTemp, err = callGas(gt, contract.Gas, gas, stack.Back(0))
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, evm.callGasTemp); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasCallCode(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas := gt.Calls
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if stack.Back(2).Sign() != 0 {
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gas += params.CallValueTransferGas
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}
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memoryGas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, memoryGas); overflow {
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return 0, errGasUintOverflow
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}
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evm.callGasTemp, err = callGas(gt, contract.Gas, gas, stack.Back(0))
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, evm.callGasTemp); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasReturn(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return memoryGasCost(mem, memorySize)
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}
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func gasRevert(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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return memoryGasCost(mem, memorySize)
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}
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func gasSuicide(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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var gas uint64
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// EIP150 homestead gas reprice fork:
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if evm.ChainConfig().IsEIP150(evm.BlockNumber) {
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gas = gt.Suicide
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var (
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address = common.BigToAddress(stack.Back(0))
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eip158 = evm.ChainConfig().IsEIP158(evm.BlockNumber)
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)
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if eip158 {
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// if empty and transfers value
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if evm.StateDB.Empty(address) && evm.StateDB.GetBalance(contract.Address()).Sign() != 0 {
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gas += gt.CreateBySuicide
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}
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} else if !evm.StateDB.Exist(address) {
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gas += gt.CreateBySuicide
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}
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}
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if !evm.StateDB.HasSuicided(contract.Address()) {
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evm.StateDB.AddRefund(params.SuicideRefundGas)
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}
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return gas, nil
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}
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func gasDelegateCall(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, gt.Calls); overflow {
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return 0, errGasUintOverflow
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}
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evm.callGasTemp, err = callGas(gt, contract.Gas, gas, stack.Back(0))
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if err != nil {
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return 0, err
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}
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if gas, overflow = math.SafeAdd(gas, evm.callGasTemp); overflow {
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return 0, errGasUintOverflow
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}
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return gas, nil
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}
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func gasStaticCall(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
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gas, err := memoryGasCost(mem, memorySize)
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if err != nil {
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return 0, err
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}
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var overflow bool
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if gas, overflow = math.SafeAdd(gas, gt.Calls); overflow {
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return 0, errGasUintOverflow
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}
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evm.callGasTemp, err = callGas(gt, contract.Gas, gas, stack.Back(0))
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if err != nil {
|
||
return 0, err
|
||
}
|
||
if gas, overflow = math.SafeAdd(gas, evm.callGasTemp); overflow {
|
||
return 0, errGasUintOverflow
|
||
}
|
||
return gas, nil
|
||
}
|
||
|
||
func gasPush(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
|
||
return GasFastestStep, nil
|
||
}
|
||
|
||
func gasSwap(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
|
||
return GasFastestStep, nil
|
||
}
|
||
|
||
func gasDup(gt params.GasTable, evm *EVM, contract *Contract, stack *Stack, mem *Memory, memorySize uint64) (uint64, error) {
|
||
return GasFastestStep, nil
|
||
}
|