55ed8fef0b
Extends the opcontext interface to include accessor for code being executed in current context. While it is possible to get the code via `statedb.GetCode`, that approach doesn't work for initcode.
317 lines
14 KiB
Go
317 lines
14 KiB
Go
// Copyright 2024 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 tracing
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import (
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"math/big"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/core/types"
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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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// OpContext provides the context at which the opcode is being
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// executed in, including the memory, stack and various contract-level information.
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type OpContext interface {
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MemoryData() []byte
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StackData() []uint256.Int
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Caller() common.Address
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Address() common.Address
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CallValue() *uint256.Int
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CallInput() []byte
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ContractCode() []byte
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}
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// StateDB gives tracers access to the whole state.
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type StateDB interface {
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GetBalance(common.Address) *uint256.Int
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GetNonce(common.Address) uint64
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GetCode(common.Address) []byte
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GetState(common.Address, common.Hash) common.Hash
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Exist(common.Address) bool
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GetRefund() uint64
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}
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// VMContext provides the context for the EVM execution.
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type VMContext struct {
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Coinbase common.Address
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BlockNumber *big.Int
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Time uint64
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Random *common.Hash
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// Effective tx gas price
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GasPrice *big.Int
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ChainConfig *params.ChainConfig
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StateDB StateDB
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}
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// BlockEvent is emitted upon tracing an incoming block.
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// It contains the block as well as consensus related information.
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type BlockEvent struct {
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Block *types.Block
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TD *big.Int
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Finalized *types.Header
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Safe *types.Header
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}
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type (
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/*
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- VM events -
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*/
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// TxStartHook is called before the execution of a transaction starts.
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// Call simulations don't come with a valid signature. `from` field
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// to be used for address of the caller.
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TxStartHook = func(vm *VMContext, tx *types.Transaction, from common.Address)
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// TxEndHook is called after the execution of a transaction ends.
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TxEndHook = func(receipt *types.Receipt, err error)
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// EnterHook is invoked when the processing of a message starts.
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//
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// Take note that EnterHook, when in the context of a live tracer, can be invoked
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// outside of the `OnTxStart` and `OnTxEnd` hooks when dealing with system calls,
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// see [OnSystemCallStartHook] and [OnSystemCallEndHook] for more information.
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EnterHook = func(depth int, typ byte, from common.Address, to common.Address, input []byte, gas uint64, value *big.Int)
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// ExitHook is invoked when the processing of a message ends.
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// `revert` is true when there was an error during the execution.
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// Exceptionally, before the homestead hardfork a contract creation that
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// ran out of gas when attempting to persist the code to database did not
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// count as a call failure and did not cause a revert of the call. This will
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// be indicated by `reverted == false` and `err == ErrCodeStoreOutOfGas`.
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//
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// Take note that ExitHook, when in the context of a live tracer, can be invoked
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// outside of the `OnTxStart` and `OnTxEnd` hooks when dealing with system calls,
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// see [OnSystemCallStartHook] and [OnSystemCallEndHook] for more information.
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ExitHook = func(depth int, output []byte, gasUsed uint64, err error, reverted bool)
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// OpcodeHook is invoked just prior to the execution of an opcode.
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OpcodeHook = func(pc uint64, op byte, gas, cost uint64, scope OpContext, rData []byte, depth int, err error)
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// FaultHook is invoked when an error occurs during the execution of an opcode.
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FaultHook = func(pc uint64, op byte, gas, cost uint64, scope OpContext, depth int, err error)
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// GasChangeHook is invoked when the gas changes.
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GasChangeHook = func(old, new uint64, reason GasChangeReason)
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/*
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- Chain events -
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*/
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// BlockchainInitHook is called when the blockchain is initialized.
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BlockchainInitHook = func(chainConfig *params.ChainConfig)
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// CloseHook is called when the blockchain closes.
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CloseHook = func()
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// BlockStartHook is called before executing `block`.
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// `td` is the total difficulty prior to `block`.
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BlockStartHook = func(event BlockEvent)
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// BlockEndHook is called after executing a block.
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BlockEndHook = func(err error)
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// SkippedBlockHook indicates a block was skipped during processing
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// due to it being known previously. This can happen e.g. when recovering
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// from a crash.
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SkippedBlockHook = func(event BlockEvent)
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// GenesisBlockHook is called when the genesis block is being processed.
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GenesisBlockHook = func(genesis *types.Block, alloc types.GenesisAlloc)
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// OnSystemCallStartHook is called when a system call is about to be executed. Today,
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// this hook is invoked when the EIP-4788 system call is about to be executed to set the
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// beacon block root.
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//
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// After this hook, the EVM call tracing will happened as usual so you will receive a `OnEnter/OnExit`
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// as well as state hooks between this hook and the `OnSystemCallEndHook`.
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//
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// Note that system call happens outside normal transaction execution, so the `OnTxStart/OnTxEnd` hooks
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// will not be invoked.
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OnSystemCallStartHook = func()
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// OnSystemCallEndHook is called when a system call has finished executing. Today,
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// this hook is invoked when the EIP-4788 system call is about to be executed to set the
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// beacon block root.
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OnSystemCallEndHook = func()
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/*
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- State events -
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*/
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// BalanceChangeHook is called when the balance of an account changes.
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BalanceChangeHook = func(addr common.Address, prev, new *big.Int, reason BalanceChangeReason)
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// NonceChangeHook is called when the nonce of an account changes.
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NonceChangeHook = func(addr common.Address, prev, new uint64)
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// CodeChangeHook is called when the code of an account changes.
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CodeChangeHook = func(addr common.Address, prevCodeHash common.Hash, prevCode []byte, codeHash common.Hash, code []byte)
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// StorageChangeHook is called when the storage of an account changes.
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StorageChangeHook = func(addr common.Address, slot common.Hash, prev, new common.Hash)
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// LogHook is called when a log is emitted.
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LogHook = func(log *types.Log)
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)
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type Hooks struct {
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// VM events
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OnTxStart TxStartHook
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OnTxEnd TxEndHook
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OnEnter EnterHook
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OnExit ExitHook
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OnOpcode OpcodeHook
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OnFault FaultHook
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OnGasChange GasChangeHook
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// Chain events
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OnBlockchainInit BlockchainInitHook
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OnClose CloseHook
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OnBlockStart BlockStartHook
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OnBlockEnd BlockEndHook
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OnSkippedBlock SkippedBlockHook
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OnGenesisBlock GenesisBlockHook
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OnSystemCallStart OnSystemCallStartHook
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OnSystemCallEnd OnSystemCallEndHook
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// State events
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OnBalanceChange BalanceChangeHook
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OnNonceChange NonceChangeHook
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OnCodeChange CodeChangeHook
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OnStorageChange StorageChangeHook
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OnLog LogHook
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}
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// BalanceChangeReason is used to indicate the reason for a balance change, useful
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// for tracing and reporting.
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type BalanceChangeReason byte
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//go:generate go run golang.org/x/tools/cmd/stringer -type=BalanceChangeReason -output gen_balance_change_reason_stringer.go
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const (
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BalanceChangeUnspecified BalanceChangeReason = 0
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// Issuance
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// BalanceIncreaseRewardMineUncle is a reward for mining an uncle block.
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BalanceIncreaseRewardMineUncle BalanceChangeReason = 1
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// BalanceIncreaseRewardMineBlock is a reward for mining a block.
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BalanceIncreaseRewardMineBlock BalanceChangeReason = 2
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// BalanceIncreaseWithdrawal is ether withdrawn from the beacon chain.
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BalanceIncreaseWithdrawal BalanceChangeReason = 3
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// BalanceIncreaseGenesisBalance is ether allocated at the genesis block.
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BalanceIncreaseGenesisBalance BalanceChangeReason = 4
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// Transaction fees
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// BalanceIncreaseRewardTransactionFee is the transaction tip increasing block builder's balance.
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BalanceIncreaseRewardTransactionFee BalanceChangeReason = 5
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// BalanceDecreaseGasBuy is spent to purchase gas for execution a transaction.
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// Part of this gas will be burnt as per EIP-1559 rules.
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BalanceDecreaseGasBuy BalanceChangeReason = 6
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// BalanceIncreaseGasReturn is ether returned for unused gas at the end of execution.
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BalanceIncreaseGasReturn BalanceChangeReason = 7
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// DAO fork
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// BalanceIncreaseDaoContract is ether sent to the DAO refund contract.
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BalanceIncreaseDaoContract BalanceChangeReason = 8
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// BalanceDecreaseDaoAccount is ether taken from a DAO account to be moved to the refund contract.
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BalanceDecreaseDaoAccount BalanceChangeReason = 9
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// BalanceChangeTransfer is ether transferred via a call.
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// it is a decrease for the sender and an increase for the recipient.
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BalanceChangeTransfer BalanceChangeReason = 10
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// BalanceChangeTouchAccount is a transfer of zero value. It is only there to
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// touch-create an account.
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BalanceChangeTouchAccount BalanceChangeReason = 11
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// BalanceIncreaseSelfdestruct is added to the recipient as indicated by a selfdestructing account.
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BalanceIncreaseSelfdestruct BalanceChangeReason = 12
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// BalanceDecreaseSelfdestruct is deducted from a contract due to self-destruct.
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BalanceDecreaseSelfdestruct BalanceChangeReason = 13
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// BalanceDecreaseSelfdestructBurn is ether that is sent to an already self-destructed
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// account within the same tx (captured at end of tx).
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// Note it doesn't account for a self-destruct which appoints itself as recipient.
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BalanceDecreaseSelfdestructBurn BalanceChangeReason = 14
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)
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// GasChangeReason is used to indicate the reason for a gas change, useful
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// for tracing and reporting.
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//
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// There is essentially two types of gas changes, those that can be emitted once per transaction
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// and those that can be emitted on a call basis, so possibly multiple times per transaction.
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//
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// They can be recognized easily by their name, those that start with `GasChangeTx` are emitted
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// once per transaction, while those that start with `GasChangeCall` are emitted on a call basis.
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type GasChangeReason byte
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const (
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GasChangeUnspecified GasChangeReason = 0
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// GasChangeTxInitialBalance is the initial balance for the call which will be equal to the gasLimit of the call. There is only
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// one such gas change per transaction.
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GasChangeTxInitialBalance GasChangeReason = 1
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// GasChangeTxIntrinsicGas is the amount of gas that will be charged for the intrinsic cost of the transaction, there is
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// always exactly one of those per transaction.
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GasChangeTxIntrinsicGas GasChangeReason = 2
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// GasChangeTxRefunds is the sum of all refunds which happened during the tx execution (e.g. storage slot being cleared)
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// this generates an increase in gas. There is at most one of such gas change per transaction.
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GasChangeTxRefunds GasChangeReason = 3
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// GasChangeTxLeftOverReturned is the amount of gas left over at the end of transaction's execution that will be returned
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// to the chain. This change will always be a negative change as we "drain" left over gas towards 0. If there was no gas
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// left at the end of execution, no such even will be emitted. The returned gas's value in Wei is returned to caller.
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// There is at most one of such gas change per transaction.
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GasChangeTxLeftOverReturned GasChangeReason = 4
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// GasChangeCallInitialBalance is the initial balance for the call which will be equal to the gasLimit of the call. There is only
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// one such gas change per call.
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GasChangeCallInitialBalance GasChangeReason = 5
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// GasChangeCallLeftOverReturned is the amount of gas left over that will be returned to the caller, this change will always
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// be a negative change as we "drain" left over gas towards 0. If there was no gas left at the end of execution, no such even
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// will be emitted.
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GasChangeCallLeftOverReturned GasChangeReason = 6
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// GasChangeCallLeftOverRefunded is the amount of gas that will be refunded to the call after the child call execution it
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// executed completed. This value is always positive as we are giving gas back to the you, the left over gas of the child.
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// If there was no gas left to be refunded, no such even will be emitted.
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GasChangeCallLeftOverRefunded GasChangeReason = 7
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// GasChangeCallContractCreation is the amount of gas that will be burned for a CREATE.
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GasChangeCallContractCreation GasChangeReason = 8
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// GasChangeContractCreation is the amount of gas that will be burned for a CREATE2.
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GasChangeCallContractCreation2 GasChangeReason = 9
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// GasChangeCallCodeStorage is the amount of gas that will be charged for code storage.
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GasChangeCallCodeStorage GasChangeReason = 10
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// GasChangeCallOpCode is the amount of gas that will be charged for an opcode executed by the EVM, exact opcode that was
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// performed can be check by `OnOpcode` handling.
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GasChangeCallOpCode GasChangeReason = 11
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// GasChangeCallPrecompiledContract is the amount of gas that will be charged for a precompiled contract execution.
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GasChangeCallPrecompiledContract GasChangeReason = 12
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// GasChangeCallStorageColdAccess is the amount of gas that will be charged for a cold storage access as controlled by EIP2929 rules.
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GasChangeCallStorageColdAccess GasChangeReason = 13
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// GasChangeCallFailedExecution is the burning of the remaining gas when the execution failed without a revert.
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GasChangeCallFailedExecution GasChangeReason = 14
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// GasChangeWitnessContractInit flags the event of adding to the witness during the contract creation initialization step.
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GasChangeWitnessContractInit GasChangeReason = 15
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// GasChangeWitnessContractCreation flags the event of adding to the witness during the contract creation finalization step.
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GasChangeWitnessContractCreation GasChangeReason = 16
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// GasChangeWitnessCodeChunk flags the event of adding one or more contract code chunks to the witness.
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GasChangeWitnessCodeChunk GasChangeReason = 17
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// GasChangeWitnessContractCollisionCheck flags the event of adding to the witness when checking for contract address collision.
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GasChangeWitnessContractCollisionCheck GasChangeReason = 18
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// GasChangeIgnored is a special value that can be used to indicate that the gas change should be ignored as
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// it will be "manually" tracked by a direct emit of the gas change event.
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GasChangeIgnored GasChangeReason = 0xFF
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)
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