forked from cerc-io/laconicd-deprecated
363 lines
9.5 KiB
Go
363 lines
9.5 KiB
Go
package state
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import (
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"bytes"
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"fmt"
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"math/big"
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sdk "github.com/cosmos/cosmos-sdk/types"
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auth "github.com/cosmos/cosmos-sdk/x/auth"
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tmcrypto "github.com/tendermint/tendermint/crypto"
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"github.com/cosmos/ethermint/types"
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ethcmn "github.com/ethereum/go-ethereum/common"
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ethstate "github.com/ethereum/go-ethereum/core/state"
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)
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var (
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_ ethstate.StateObject = (*stateObject)(nil)
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emptyCodeHash = tmcrypto.Sha256(nil)
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)
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type (
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// stateObject represents an Ethereum account which is being modified.
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//
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// The usage pattern is as follows:
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// First you need to obtain a state object.
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// Account values can be accessed and modified through the object.
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// Finally, call CommitTrie to write the modified storage trie into a database.
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stateObject struct {
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address ethcmn.Address
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stateDB *CommitStateDB
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account *types.Account
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// DB error.
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// State objects are used by the consensus core and VM which are
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// unable to deal with database-level errors. Any error that occurs
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// during a database read is memoized here and will eventually be returned
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// by StateDB.Commit.
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dbErr error
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code types.Code // contract bytecode, which gets set when code is loaded
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originStorage types.Storage // Storage cache of original entries to dedup rewrites
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dirtyStorage types.Storage // Storage entries that need to be flushed to disk
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// cache flags
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//
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// When an object is marked suicided it will be delete from the trie during
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// the "update" phase of the state transition.
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dirtyCode bool // true if the code was updated
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suicided bool
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deleted bool
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}
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)
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func newObject(db *CommitStateDB, accProto auth.Account) *stateObject {
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acc, ok := accProto.(*types.Account)
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if !ok {
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panic(fmt.Sprintf("invalid account type for state object: %T", acc))
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}
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if acc.CodeHash == nil {
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acc.CodeHash = emptyCodeHash
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}
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return &stateObject{
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stateDB: db,
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account: acc,
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address: ethcmn.BytesToAddress(acc.Address.Bytes()),
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originStorage: make(types.Storage),
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dirtyStorage: make(types.Storage),
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}
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}
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// ----------------------------------------------------------------------------
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// Setters
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// ----------------------------------------------------------------------------
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// SetState updates a value in account storage. Note, the key will be prefixed
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// with the address of the state object.
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func (so *stateObject) SetState(db ethstate.Database, key, value ethcmn.Hash) {
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// if the new value is the same as old, don't set
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prev := so.GetState(db, key)
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if prev == value {
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return
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}
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prefixKey := so.GetStorageByAddressKey(key.Bytes())
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// since the new value is different, update and journal the change
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so.stateDB.journal.append(storageChange{
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account: &so.address,
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key: prefixKey,
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prevValue: prev,
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})
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so.setState(prefixKey, value)
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}
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func (so *stateObject) setState(key, value ethcmn.Hash) {
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so.dirtyStorage[key] = value
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}
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// SetCode sets the state object's code.
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func (so *stateObject) SetCode(codeHash ethcmn.Hash, code []byte) {
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prevCode := so.Code(nil)
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so.stateDB.journal.append(codeChange{
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account: &so.address,
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prevHash: so.CodeHash(),
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prevCode: prevCode,
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})
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so.setCode(codeHash, code)
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}
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func (so *stateObject) setCode(codeHash ethcmn.Hash, code []byte) {
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so.code = code
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so.account.CodeHash = codeHash.Bytes()
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so.dirtyCode = true
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}
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// AddBalance adds an amount to a state object's balance. It is used to add
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// funds to the destination account of a transfer.
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func (so *stateObject) AddBalance(amount *big.Int) {
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amt := sdk.NewIntFromBigInt(amount)
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// EIP158: We must check emptiness for the objects such that the account
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// clearing (0,0,0 objects) can take effect.
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if amt.Sign() == 0 {
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if so.empty() {
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so.touch()
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}
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return
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}
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newBalance := so.account.Balance().Add(amt)
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so.SetBalance(newBalance.BigInt())
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}
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// SubBalance removes an amount from the stateObject's balance. It is used to
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// remove funds from the origin account of a transfer.
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func (so *stateObject) SubBalance(amount *big.Int) {
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amt := sdk.NewIntFromBigInt(amount)
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if amt.Sign() == 0 {
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return
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}
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newBalance := so.account.Balance().Sub(amt)
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so.SetBalance(newBalance.BigInt())
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}
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// SetBalance sets the state object's balance.
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func (so *stateObject) SetBalance(amount *big.Int) {
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amt := sdk.NewIntFromBigInt(amount)
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so.stateDB.journal.append(balanceChange{
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account: &so.address,
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prev: so.account.Balance(),
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})
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so.setBalance(amt)
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}
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func (so *stateObject) setBalance(amount sdk.Int) {
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so.account.SetBalance(amount)
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}
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// SetNonce sets the state object's nonce (sequence number).
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func (so *stateObject) SetNonce(nonce uint64) {
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so.stateDB.journal.append(nonceChange{
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account: &so.address,
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prev: so.account.Sequence,
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})
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so.setNonce(int64(nonce))
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}
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func (so *stateObject) setNonce(nonce int64) {
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so.account.Sequence = nonce
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}
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// setError remembers the first non-nil error it is called with.
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func (so *stateObject) setError(err error) {
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if so.dbErr == nil {
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so.dbErr = err
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}
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}
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func (so *stateObject) markSuicided() {
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so.suicided = true
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}
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// commitState commits all dirty storage to a KVStore.
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func (so *stateObject) commitState() {
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ctx := so.stateDB.ctx
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store := ctx.KVStore(so.stateDB.storageKey)
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for key, value := range so.dirtyStorage {
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delete(so.dirtyStorage, key)
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// skip no-op changes, persist actual changes
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if value == so.originStorage[key] {
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continue
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}
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so.originStorage[key] = value
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// delete empty values
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if (value == ethcmn.Hash{}) {
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store.Delete(key.Bytes())
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continue
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}
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store.Set(key.Bytes(), value.Bytes())
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}
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// TODO: Set the account (storage) root (but we probably don't need this)
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}
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// ----------------------------------------------------------------------------
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// Getters
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// ----------------------------------------------------------------------------
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// Address returns the address of the state object.
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func (so stateObject) Address() ethcmn.Address {
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return so.address
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}
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// Balance returns the state object's current balance.
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func (so *stateObject) Balance() *big.Int {
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return so.account.Balance().BigInt()
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}
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// CodeHash returns the state object's code hash.
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func (so *stateObject) CodeHash() []byte {
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return so.account.CodeHash
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}
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// Nonce returns the state object's current nonce (sequence number).
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func (so *stateObject) Nonce() uint64 {
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return uint64(so.account.Sequence)
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}
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// Code returns the contract code associated with this object, if any.
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func (so *stateObject) Code(_ ethstate.Database) []byte {
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if so.code != nil {
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return so.code
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}
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if bytes.Equal(so.CodeHash(), emptyCodeHash) {
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return nil
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}
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ctx := so.stateDB.ctx
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store := ctx.KVStore(so.stateDB.codeKey)
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code := store.Get(so.CodeHash())
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if len(code) == 0 {
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so.setError(fmt.Errorf("failed to get code hash %x for address: %x", so.CodeHash(), so.Address()))
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}
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so.code = code
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return code
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}
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// GetState retrieves a value from the account storage trie. Note, the key will
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// be prefixed with the address of the state object.
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func (so *stateObject) GetState(db ethstate.Database, key ethcmn.Hash) ethcmn.Hash {
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prefixKey := so.GetStorageByAddressKey(key.Bytes())
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// if we have a dirty value for this state entry, return it
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value, dirty := so.dirtyStorage[prefixKey]
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if dirty {
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return value
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}
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// otherwise return the entry's original value
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return so.GetCommittedState(db, key)
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}
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// GetCommittedState retrieves a value from the committed account storage trie.
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// Note, the key will be prefixed with the address of the state object.
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func (so *stateObject) GetCommittedState(_ ethstate.Database, key ethcmn.Hash) ethcmn.Hash {
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prefixKey := so.GetStorageByAddressKey(key.Bytes())
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// if we have the original value cached, return that
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value, cached := so.originStorage[prefixKey]
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if cached {
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return value
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}
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// otherwise load the value from the KVStore
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ctx := so.stateDB.ctx
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store := ctx.KVStore(so.stateDB.storageKey)
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rawValue := store.Get(prefixKey.Bytes())
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// TODO: Do we need to RLP split/decode?
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if len(rawValue) > 0 {
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value.SetBytes(rawValue)
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}
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so.originStorage[prefixKey] = value
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return value
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}
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// ----------------------------------------------------------------------------
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// Auxiliary
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// ----------------------------------------------------------------------------
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// ReturnGas returns the gas back to the origin. Used by the Virtual machine or
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// Closures. It performs a no-op.
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func (so *stateObject) ReturnGas(gas *big.Int) {}
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func (so *stateObject) deepCopy(db *CommitStateDB) *stateObject {
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newStateObj := newObject(db, so.account)
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newStateObj.code = so.code
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newStateObj.dirtyStorage = so.dirtyStorage.Copy()
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newStateObj.originStorage = so.originStorage.Copy()
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newStateObj.suicided = so.suicided
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newStateObj.dirtyCode = so.dirtyCode
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newStateObj.deleted = so.deleted
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return newStateObj
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}
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// empty returns whether the account is considered empty.
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func (so *stateObject) empty() bool {
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return so.account.Sequence == 0 &&
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so.account.Balance().Sign() == 0 &&
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bytes.Equal(so.account.CodeHash, emptyCodeHash)
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}
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func (so *stateObject) touch() {
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so.stateDB.journal.append(touchChange{
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account: &so.address,
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})
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if so.address == ripemd {
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// Explicitly put it in the dirty-cache, which is otherwise generated from
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// flattened journals.
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so.stateDB.journal.dirty(so.address)
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}
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}
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// GetStorageByAddressKey returns a hash of the composite key for a state
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// object's storage prefixed with it's address.
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func (so stateObject) GetStorageByAddressKey(key []byte) ethcmn.Hash {
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prefix := so.Address().Bytes()
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compositeKey := make([]byte, len(prefix)+len(key))
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copy(compositeKey, prefix)
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copy(compositeKey[len(prefix):], key)
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return ethcmn.BytesToHash(tmcrypto.Sha256(compositeKey))
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}
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