052134aff6
* refactor (errors) refactor errors import to use cosmossdk.io instead of cosmos-sdk/types/errors * refactor (errors) refactor errors import in ethsecp256k1 file * refactor (errors) add changes to changelog
464 lines
14 KiB
Go
464 lines
14 KiB
Go
package statedb
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import (
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"fmt"
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"math/big"
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"sort"
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errorsmod "cosmossdk.io/errors"
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sdk "github.com/cosmos/cosmos-sdk/types"
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"github.com/ethereum/go-ethereum/common"
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ethtypes "github.com/ethereum/go-ethereum/core/types"
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"github.com/ethereum/go-ethereum/core/vm"
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"github.com/ethereum/go-ethereum/crypto"
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)
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// revision is the identifier of a version of state.
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// it consists of an auto-increment id and a journal index.
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// it's safer to use than using journal index alone.
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type revision struct {
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id int
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journalIndex int
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}
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var _ vm.StateDB = &StateDB{}
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// StateDB structs within the ethereum protocol are used to store anything
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// within the merkle trie. StateDBs take care of caching and storing
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// nested states. It's the general query interface to retrieve:
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// * Contracts
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// * Accounts
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type StateDB struct {
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keeper Keeper
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ctx sdk.Context
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// Journal of state modifications. This is the backbone of
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// Snapshot and RevertToSnapshot.
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journal *journal
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validRevisions []revision
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nextRevisionID int
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stateObjects map[common.Address]*stateObject
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txConfig TxConfig
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// The refund counter, also used by state transitioning.
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refund uint64
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// Per-transaction logs
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logs []*ethtypes.Log
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// Per-transaction access list
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accessList *accessList
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}
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// New creates a new state from a given trie.
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func New(ctx sdk.Context, keeper Keeper, txConfig TxConfig) *StateDB {
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return &StateDB{
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keeper: keeper,
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ctx: ctx,
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stateObjects: make(map[common.Address]*stateObject),
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journal: newJournal(),
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accessList: newAccessList(),
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txConfig: txConfig,
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}
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}
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// Keeper returns the underlying `Keeper`
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func (s *StateDB) Keeper() Keeper {
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return s.keeper
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}
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// AddLog adds a log, called by evm.
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func (s *StateDB) AddLog(log *ethtypes.Log) {
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s.journal.append(addLogChange{})
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log.TxHash = s.txConfig.TxHash
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log.BlockHash = s.txConfig.BlockHash
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log.TxIndex = s.txConfig.TxIndex
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log.Index = s.txConfig.LogIndex + uint(len(s.logs))
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s.logs = append(s.logs, log)
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}
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// Logs returns the logs of current transaction.
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func (s *StateDB) Logs() []*ethtypes.Log {
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return s.logs
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}
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// AddRefund adds gas to the refund counter
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func (s *StateDB) AddRefund(gas uint64) {
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s.journal.append(refundChange{prev: s.refund})
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s.refund += gas
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}
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// SubRefund removes gas from the refund counter.
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// This method will panic if the refund counter goes below zero
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func (s *StateDB) SubRefund(gas uint64) {
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s.journal.append(refundChange{prev: s.refund})
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if gas > s.refund {
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panic(fmt.Sprintf("Refund counter below zero (gas: %d > refund: %d)", gas, s.refund))
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}
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s.refund -= gas
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}
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// Exist reports whether the given account address exists in the state.
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// Notably this also returns true for suicided accounts.
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func (s *StateDB) Exist(addr common.Address) bool {
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return s.getStateObject(addr) != nil
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}
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// Empty returns whether the state object is either non-existent
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// or empty according to the EIP161 specification (balance = nonce = code = 0)
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func (s *StateDB) Empty(addr common.Address) bool {
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so := s.getStateObject(addr)
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return so == nil || so.empty()
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}
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// GetBalance retrieves the balance from the given address or 0 if object not found
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func (s *StateDB) GetBalance(addr common.Address) *big.Int {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.Balance()
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}
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return common.Big0
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}
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// GetNonce returns the nonce of account, 0 if not exists.
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func (s *StateDB) GetNonce(addr common.Address) uint64 {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.Nonce()
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}
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return 0
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}
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// GetCode returns the code of account, nil if not exists.
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func (s *StateDB) GetCode(addr common.Address) []byte {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.Code()
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}
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return nil
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}
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// GetCodeSize returns the code size of account.
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func (s *StateDB) GetCodeSize(addr common.Address) int {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.CodeSize()
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}
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return 0
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}
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// GetCodeHash returns the code hash of account.
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func (s *StateDB) GetCodeHash(addr common.Address) common.Hash {
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stateObject := s.getStateObject(addr)
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if stateObject == nil {
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return common.Hash{}
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}
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return common.BytesToHash(stateObject.CodeHash())
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}
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// GetState retrieves a value from the given account's storage trie.
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func (s *StateDB) GetState(addr common.Address, hash common.Hash) common.Hash {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.GetState(hash)
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}
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return common.Hash{}
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}
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// GetCommittedState retrieves a value from the given account's committed storage trie.
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func (s *StateDB) GetCommittedState(addr common.Address, hash common.Hash) common.Hash {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.GetCommittedState(hash)
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}
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return common.Hash{}
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}
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// GetRefund returns the current value of the refund counter.
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func (s *StateDB) GetRefund() uint64 {
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return s.refund
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}
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// HasSuicided returns if the contract is suicided in current transaction.
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func (s *StateDB) HasSuicided(addr common.Address) bool {
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stateObject := s.getStateObject(addr)
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if stateObject != nil {
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return stateObject.suicided
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}
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return false
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}
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// AddPreimage records a SHA3 preimage seen by the VM.
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// AddPreimage performs a no-op since the EnablePreimageRecording flag is disabled
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// on the vm.Config during state transitions. No store trie preimages are written
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// to the database.
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func (s *StateDB) AddPreimage(hash common.Hash, preimage []byte) {}
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// getStateObject retrieves a state object given by the address, returning nil if
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// the object is not found.
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func (s *StateDB) getStateObject(addr common.Address) *stateObject {
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// Prefer live objects if any is available
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if obj := s.stateObjects[addr]; obj != nil {
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return obj
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}
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// If no live objects are available, load it from keeper
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account := s.keeper.GetAccount(s.ctx, addr)
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if account == nil {
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return nil
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}
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// Insert into the live set
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obj := newObject(s, addr, *account)
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s.setStateObject(obj)
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return obj
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}
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// getOrNewStateObject retrieves a state object or create a new state object if nil.
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func (s *StateDB) getOrNewStateObject(addr common.Address) *stateObject {
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stateObject := s.getStateObject(addr)
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if stateObject == nil {
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stateObject, _ = s.createObject(addr)
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}
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return stateObject
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}
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// createObject creates a new state object. If there is an existing account with
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// the given address, it is overwritten and returned as the second return value.
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func (s *StateDB) createObject(addr common.Address) (newobj, prev *stateObject) {
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prev = s.getStateObject(addr)
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newobj = newObject(s, addr, Account{})
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if prev == nil {
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s.journal.append(createObjectChange{account: &addr})
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} else {
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s.journal.append(resetObjectChange{prev: prev})
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}
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s.setStateObject(newobj)
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if prev != nil {
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return newobj, prev
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}
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return newobj, nil
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}
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// CreateAccount explicitly creates a state object. If a state object with the address
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// already exists the balance is carried over to the new account.
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//
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// CreateAccount is called during the EVM CREATE operation. The situation might arise that
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// a contract does the following:
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//
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// 1. sends funds to sha(account ++ (nonce + 1))
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// 2. tx_create(sha(account ++ nonce)) (note that this gets the address of 1)
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//
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// Carrying over the balance ensures that Ether doesn't disappear.
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func (s *StateDB) CreateAccount(addr common.Address) {
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newObj, prev := s.createObject(addr)
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if prev != nil {
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newObj.setBalance(prev.account.Balance)
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}
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}
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// ForEachStorage iterate the contract storage, the iteration order is not defined.
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func (s *StateDB) ForEachStorage(addr common.Address, cb func(key, value common.Hash) bool) error {
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so := s.getStateObject(addr)
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if so == nil {
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return nil
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}
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s.keeper.ForEachStorage(s.ctx, addr, func(key, value common.Hash) bool {
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if value, dirty := so.dirtyStorage[key]; dirty {
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return cb(key, value)
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}
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if len(value) > 0 {
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return cb(key, value)
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}
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return true
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})
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return nil
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}
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func (s *StateDB) setStateObject(object *stateObject) {
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s.stateObjects[object.Address()] = object
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}
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/*
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* SETTERS
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*/
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// AddBalance adds amount to the account associated with addr.
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func (s *StateDB) AddBalance(addr common.Address, amount *big.Int) {
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stateObject := s.getOrNewStateObject(addr)
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if stateObject != nil {
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stateObject.AddBalance(amount)
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}
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}
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// SubBalance subtracts amount from the account associated with addr.
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func (s *StateDB) SubBalance(addr common.Address, amount *big.Int) {
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stateObject := s.getOrNewStateObject(addr)
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if stateObject != nil {
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stateObject.SubBalance(amount)
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}
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}
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// SetNonce sets the nonce of account.
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func (s *StateDB) SetNonce(addr common.Address, nonce uint64) {
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stateObject := s.getOrNewStateObject(addr)
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if stateObject != nil {
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stateObject.SetNonce(nonce)
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}
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}
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// SetCode sets the code of account.
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func (s *StateDB) SetCode(addr common.Address, code []byte) {
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stateObject := s.getOrNewStateObject(addr)
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if stateObject != nil {
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stateObject.SetCode(crypto.Keccak256Hash(code), code)
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}
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}
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// SetState sets the contract state.
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func (s *StateDB) SetState(addr common.Address, key, value common.Hash) {
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stateObject := s.getOrNewStateObject(addr)
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if stateObject != nil {
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stateObject.SetState(key, value)
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}
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}
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// Suicide marks the given account as suicided.
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// This clears the account balance.
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//
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// The account's state object is still available until the state is committed,
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// getStateObject will return a non-nil account after Suicide.
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func (s *StateDB) Suicide(addr common.Address) bool {
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stateObject := s.getStateObject(addr)
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if stateObject == nil {
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return false
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}
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s.journal.append(suicideChange{
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account: &addr,
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prev: stateObject.suicided,
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prevbalance: new(big.Int).Set(stateObject.Balance()),
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})
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stateObject.markSuicided()
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stateObject.account.Balance = new(big.Int)
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return true
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}
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// PrepareAccessList handles the preparatory steps for executing a state transition with
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// regards to both EIP-2929 and EIP-2930:
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//
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// - Add sender to access list (2929)
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// - Add destination to access list (2929)
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// - Add precompiles to access list (2929)
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// - Add the contents of the optional tx access list (2930)
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//
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// This method should only be called if Yolov3/Berlin/2929+2930 is applicable at the current number.
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func (s *StateDB) PrepareAccessList(sender common.Address, dst *common.Address, precompiles []common.Address, list ethtypes.AccessList) {
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s.AddAddressToAccessList(sender)
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if dst != nil {
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s.AddAddressToAccessList(*dst)
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// If it's a create-tx, the destination will be added inside evm.create
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}
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for _, addr := range precompiles {
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s.AddAddressToAccessList(addr)
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}
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for _, el := range list {
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s.AddAddressToAccessList(el.Address)
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for _, key := range el.StorageKeys {
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s.AddSlotToAccessList(el.Address, key)
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}
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}
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}
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// AddAddressToAccessList adds the given address to the access list
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func (s *StateDB) AddAddressToAccessList(addr common.Address) {
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if s.accessList.AddAddress(addr) {
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s.journal.append(accessListAddAccountChange{&addr})
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}
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}
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// AddSlotToAccessList adds the given (address, slot)-tuple to the access list
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func (s *StateDB) AddSlotToAccessList(addr common.Address, slot common.Hash) {
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addrMod, slotMod := s.accessList.AddSlot(addr, slot)
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if addrMod {
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// In practice, this should not happen, since there is no way to enter the
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// scope of 'address' without having the 'address' become already added
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// to the access list (via call-variant, create, etc).
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// Better safe than sorry, though
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s.journal.append(accessListAddAccountChange{&addr})
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}
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if slotMod {
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s.journal.append(accessListAddSlotChange{
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address: &addr,
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slot: &slot,
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})
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}
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}
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// AddressInAccessList returns true if the given address is in the access list.
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func (s *StateDB) AddressInAccessList(addr common.Address) bool {
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return s.accessList.ContainsAddress(addr)
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}
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// SlotInAccessList returns true if the given (address, slot)-tuple is in the access list.
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func (s *StateDB) SlotInAccessList(addr common.Address, slot common.Hash) (addressPresent bool, slotPresent bool) {
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return s.accessList.Contains(addr, slot)
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}
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// Snapshot returns an identifier for the current revision of the state.
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func (s *StateDB) Snapshot() int {
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id := s.nextRevisionID
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s.nextRevisionID++
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s.validRevisions = append(s.validRevisions, revision{id, s.journal.length()})
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return id
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}
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// RevertToSnapshot reverts all state changes made since the given revision.
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func (s *StateDB) RevertToSnapshot(revid int) {
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// Find the snapshot in the stack of valid snapshots.
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idx := sort.Search(len(s.validRevisions), func(i int) bool {
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return s.validRevisions[i].id >= revid
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})
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if idx == len(s.validRevisions) || s.validRevisions[idx].id != revid {
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panic(fmt.Errorf("revision id %v cannot be reverted", revid))
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}
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snapshot := s.validRevisions[idx].journalIndex
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// Replay the journal to undo changes and remove invalidated snapshots
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s.journal.Revert(s, snapshot)
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s.validRevisions = s.validRevisions[:idx]
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}
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// Commit writes the dirty states to keeper
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// the StateDB object should be discarded after committed.
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func (s *StateDB) Commit() error {
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for _, addr := range s.journal.sortedDirties() {
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obj := s.stateObjects[addr]
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if obj.suicided {
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if err := s.keeper.DeleteAccount(s.ctx, obj.Address()); err != nil {
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return errorsmod.Wrap(err, "failed to delete account")
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}
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} else {
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if obj.code != nil && obj.dirtyCode {
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s.keeper.SetCode(s.ctx, obj.CodeHash(), obj.code)
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}
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if err := s.keeper.SetAccount(s.ctx, obj.Address(), obj.account); err != nil {
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return errorsmod.Wrap(err, "failed to set account")
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}
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for _, key := range obj.dirtyStorage.SortedKeys() {
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value := obj.dirtyStorage[key]
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// Skip noop changes, persist actual changes
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if value == obj.originStorage[key] {
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continue
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}
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s.keeper.SetState(s.ctx, obj.Address(), key, value.Bytes())
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}
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}
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}
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return nil
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}
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