go-ethereum/core/vm/logger.go
Matthieu Vachon 01ccd7126e Change OnGasConsumed(gas, cost uint64, reason) to OnGasChange(old, new uint64, reason)
This way, we avoid having a `cost` that is negative which does not make sense for a `uint64`. Having the `old, new` also yields correct value and the delta can then be negative and be holded in a `int64`.
2023-08-28 15:30:10 -04:00

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// Copyright 2015 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package vm
import (
"math/big"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/types"
)
// EVMLogger is used to collect execution traces from an EVM transaction
// execution. CaptureState is called for each step of the VM with the
// current VM state.
// Note that reference types are actual VM data structures; make copies
// if you need to retain them beyond the current call.
type EVMLogger interface {
// Transaction level
CaptureTxStart(evm *EVM, tx *types.Transaction)
CaptureTxEnd(receipt *types.Receipt, err error)
// Top call frame
CaptureStart(from common.Address, to common.Address, create bool, input []byte, gas uint64, value *big.Int)
CaptureEnd(output []byte, gasUsed uint64, err error)
// Rest of call frames
CaptureEnter(typ OpCode, from common.Address, to common.Address, input []byte, gas uint64, value *big.Int)
CaptureExit(output []byte, gasUsed uint64, err error)
// Opcode level
CaptureState(pc uint64, op OpCode, gas, cost uint64, scope *ScopeContext, rData []byte, depth int, err error)
CaptureFault(pc uint64, op OpCode, gas, cost uint64, scope *ScopeContext, depth int, err error)
CaptureKeccakPreimage(hash common.Hash, data []byte)
// Misc
OnGasChange(old, new uint64, reason GasChangeReason)
}
// GasChangeReason is used to indicate the reason for a gas change, useful
// for tracing and reporting.
type GasChangeReason byte
const (
GasChangeUnspecified GasChangeReason = iota
// GasInitialBalance is the initial balance for the call which will be equal to the gasLimit of the call
GasInitialBalance
// GasRefunded is the amount of gas that will be refunded to the caller for data returned to the chain
// PR Review: Is that the right description? Called in core/state_transition.go#StateTransition.refundGas
GasRefunded
// GasBuyBack is the amount of gas that will be bought back by the chain and returned in Wei to the caller
GasBuyBack
// GasChangeIntrinsicGas is the amount of gas that will be charged for the intrinsic cost of the transaction, there is
// always exactly one of those per transaction
GasChangeIntrinsicGas
// PR Review: `GasChangeContractCreation/2` are actually the EIP150 burn cost of CREATE/CREATE2 respectively.
// I think our old name `GasChangeContractCreation/2` is not really accurate. I don't
// think that using EIP150 as a name is a good idea as rules can change in the future. So
// maybe we can just call them `GasChangeCreateBurn/GasChangeCreate2Burn`? Burn might
// feels like the wrong term, `Stipend` came to mind also but I'm unsure.
//
// I would like also to keep the distinction between CREATE and CREATE2 however, it's an
// important thing IMO as they are different and could use different rules in the future.
// GasChangeContractCreation is the amount of gas that will be burned for a CREATE, today controlled by EIP150 rules
GasChangeContractCreation
// GasChangeContractCreation is the amount of gas that will be burned for a CREATE2, today controlled by EIP150 rules
GasChangeContractCreation2
// GasChangeCodeStorage is the amount of gas that will be charged for code storage
GasChangeCodeStorage
// GasChangeOpCode is the amount of gas that will be charged for an opcode executed by the EVM, exact opcode that was
// performed can be check by `CaptureState` handling
GasChangeOpCode
// GasChangePrecompiledContract is the amount of gas that will be charged for a precompiled contract execution
GasChangePrecompiledContract
// GasChangeStorageColdAccess is the amount of gas that will be charged for a cold storage access as controlled by EIP2929 rules
GasChangeStorageColdAccess
// GasChangeCallLeftOverRefunded is the amount of gas that will be refunded to the caller after the execution of the call, if there is left over at the end of execution
GasChangeCallLeftOverRefunded
// GasChangeFailedExecution is the burning of the remaining gas when the execution failed without a revert
GasChangeFailedExecution
)