mirror of
https://github.com/ethereum/go-ethereum.git
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606 lines
16 KiB
Go
606 lines
16 KiB
Go
// Copyright 2016 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 state
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import (
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"fmt"
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"maps"
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"slices"
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"sort"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/crypto"
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"github.com/holiman/uint256"
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)
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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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// journalEntry is a modification entry in the state change journal that can be
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// reverted on demand.
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type journalEntry interface {
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// revert undoes the changes introduced by this journal entry.
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revert(*StateDB)
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// dirtied returns the Ethereum address modified by this journal entry.
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// indicates false if no address was changed.
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dirtied() (common.Address, bool)
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// copy returns a deep-copied journal entry.
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copy() journalEntry
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}
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// journal contains the list of state modifications applied since the last state
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// commit. These are tracked to be able to be reverted in the case of an execution
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// exception or request for reversal.
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type journal struct {
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entries []journalEntry // Current changes tracked by the journal
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dirties map[common.Address]int // Dirty accounts and the number of changes
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validRevisions []revision
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nextRevisionId int
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// stateBytesCharged caches the state bytes result per snapshot ID.
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// When a call boundary computes its state bytes and charges gas,
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// the result is stored here. The parent frame subtracts the sum
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// of its subcalls' cached results to avoid double-counting.
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stateBytesCharged map[int]int64
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}
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// newJournal creates a new initialized journal.
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func newJournal() *journal {
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return &journal{
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dirties: make(map[common.Address]int),
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stateBytesCharged: make(map[int]int64),
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}
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}
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// reset clears the journal, after this operation the journal can be used anew.
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// It is semantically similar to calling 'newJournal', but the underlying slices
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// can be reused.
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func (j *journal) reset() {
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j.entries = j.entries[:0]
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j.validRevisions = j.validRevisions[:0]
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clear(j.dirties)
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clear(j.stateBytesCharged)
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j.nextRevisionId = 0
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}
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// snapshot returns an identifier for the current revision of the state.
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func (j *journal) snapshot() int {
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id := j.nextRevisionId
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j.nextRevisionId++
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j.validRevisions = append(j.validRevisions, revision{id, j.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 (j *journal) revertToSnapshot(revid int, s *StateDB) {
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// Find the snapshot in the stack of valid snapshots.
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idx := sort.Search(len(j.validRevisions), func(i int) bool {
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return j.validRevisions[i].id >= revid
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})
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if idx == len(j.validRevisions) || j.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 := j.validRevisions[idx].journalIndex
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// Replay the journal to undo changes and remove invalidated snapshots
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j.revert(s, snapshot)
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j.validRevisions = j.validRevisions[:idx]
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}
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// append inserts a new modification entry to the end of the change journal.
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func (j *journal) append(entry journalEntry) {
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j.entries = append(j.entries, entry)
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if addr, dirty := entry.dirtied(); dirty {
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j.dirties[addr]++
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}
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}
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// revert undoes a batch of journalled modifications along with any reverted
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// dirty handling too.
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func (j *journal) revert(statedb *StateDB, snapshot int) {
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for i := len(j.entries) - 1; i >= snapshot; i-- {
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// Undo the changes made by the operation
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j.entries[i].revert(statedb)
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// Drop any dirty tracking induced by the change
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if addr, dirty := j.entries[i].dirtied(); dirty {
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if j.dirties[addr]--; j.dirties[addr] == 0 {
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delete(j.dirties, addr)
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}
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}
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}
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j.entries = j.entries[:snapshot]
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}
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// dirty explicitly sets an address to dirty, even if the change entries would
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// otherwise suggest it as clean. This method is an ugly hack to handle the RIPEMD
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// precompile consensus exception.
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func (j *journal) dirty(addr common.Address) {
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j.dirties[addr]++
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}
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// length returns the current number of entries in the journal.
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func (j *journal) length() int {
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return len(j.entries)
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}
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// stateChangedBytes computes the state bytes created by the call frame
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// identified by snapshotId. Since subcalls always compute their results
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// before the parent (innermost-first), this only scans journal entries
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// between this snapshot and the next one — the frame's own entries.
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// Subcall results are summed from the cache and subtracted.
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//
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// The result is cached in stateBytesCharged[snapshotId] so the parent
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// frame can look it up instead of re-scanning.
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func (j *journal) stateChangedBytes(snapshotId int, stateObjects map[common.Address]*stateObject) int64 {
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// TODO (MariusVanDerWijden): this is a bit slop-py needs to be cleaned up
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// Resolve snapshot index.
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idx := sort.Search(len(j.validRevisions), func(i int) bool {
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return j.validRevisions[i].id >= snapshotId
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})
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if idx == len(j.validRevisions) || j.validRevisions[idx].id != snapshotId {
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panic(fmt.Errorf("snapshot id %v not found for stateChangedBytes", snapshotId))
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}
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start := j.validRevisions[idx].journalIndex
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// Our range is [start, end) where end is the next revision's start,
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// or the end of the journal if we're the last revision.
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end := len(j.entries)
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if idx+1 < len(j.validRevisions) {
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end = j.validRevisions[idx+1].journalIndex
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}
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// Walk only our own entries.
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type slotKey struct {
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addr common.Address
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key common.Hash
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}
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type slotInfo struct {
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prev common.Hash // value before first write in this frame
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orig common.Hash // committed/original value from trie
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}
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slots := make(map[slotKey]*slotInfo)
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created := make(map[common.Address]bool)
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codeChanged := make(map[common.Address]bool)
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for i := start; i < end; i++ {
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switch e := j.entries[i].(type) {
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case createContractChange:
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created[e.account] = true
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case codeChange:
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codeChanged[e.account] = true
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case storageChange:
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sk := slotKey{e.account, e.key}
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if _, seen := slots[sk]; !seen {
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slots[sk] = &slotInfo{prev: e.prevvalue, orig: e.origvalue}
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}
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}
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}
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var totalBytes int64
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for range created {
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totalBytes += CostPerAccount
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}
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for sk, si := range slots {
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obj := stateObjects[sk.addr]
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if obj == nil {
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continue
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}
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cur := obj.dirtyStorage[sk.key]
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prevZero := si.prev == (common.Hash{})
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curZero := cur == (common.Hash{})
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origZero := si.orig == (common.Hash{})
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if prevZero && !curZero && origZero {
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// Frame-entry zero, frame-exit non-zero, tx-entry zero:
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// this frame created a new slot, charge.
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totalBytes += CostPerSlot
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} else if !prevZero && curZero && origZero {
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// Only refund slots created and freed in this transaction
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totalBytes -= CostPerSlot
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}
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// All other transitions are free:
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// - prevZero && !curZero && !origZero: pre-existing slot was
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// cleared in earlier frame, re-set here — no charge.
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// - X → Y (non-zero to non-zero): no charge.
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// - zero → zero: no change.
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// - !prevZero && curZero && !origZero: pre-exising slot was
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// cleared now, don't refund to not enable gas tokens.
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}
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for addr := range codeChanged {
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obj := stateObjects[addr]
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if obj != nil {
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totalBytes += int64(len(obj.code))
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}
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}
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// Cache our result so the parent can look it up.
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j.stateBytesCharged[snapshotId] = totalBytes
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return totalBytes
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}
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// copy returns a deep-copied journal.
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func (j *journal) copy() *journal {
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entries := make([]journalEntry, 0, j.length())
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for i := 0; i < j.length(); i++ {
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entries = append(entries, j.entries[i].copy())
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}
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return &journal{
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entries: entries,
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dirties: maps.Clone(j.dirties),
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validRevisions: slices.Clone(j.validRevisions),
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nextRevisionId: j.nextRevisionId,
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stateBytesCharged: maps.Clone(j.stateBytesCharged),
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}
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}
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func (j *journal) logChange(txHash common.Hash) {
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j.append(addLogChange{txhash: txHash})
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}
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func (j *journal) createObject(addr common.Address) {
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j.append(createObjectChange{account: addr})
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}
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func (j *journal) createContract(addr common.Address) {
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j.append(createContractChange{account: addr})
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}
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func (j *journal) destruct(addr common.Address) {
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j.append(selfDestructChange{account: addr})
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}
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func (j *journal) storageChange(addr common.Address, key, prev, origin common.Hash) {
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j.append(storageChange{
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account: addr,
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key: key,
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prevvalue: prev,
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origvalue: origin,
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})
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}
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func (j *journal) transientStateChange(addr common.Address, key, prev common.Hash) {
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j.append(transientStorageChange{
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account: addr,
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key: key,
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prevalue: prev,
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})
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}
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func (j *journal) refundChange(previous uint64) {
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j.append(refundChange{prev: previous})
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}
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func (j *journal) balanceChange(addr common.Address, previous *uint256.Int) {
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j.append(balanceChange{
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account: addr,
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prev: previous.Clone(),
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})
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}
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func (j *journal) setCode(address common.Address, prevCode []byte) {
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j.append(codeChange{
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account: address,
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prevCode: prevCode,
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})
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}
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func (j *journal) nonceChange(address common.Address, prev uint64) {
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j.append(nonceChange{
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account: address,
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prev: prev,
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})
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}
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func (j *journal) touchChange(address common.Address) {
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j.append(touchChange{
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account: address,
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})
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if 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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j.dirty(address)
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}
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}
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func (j *journal) accessListAddAccount(addr common.Address) {
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j.append(accessListAddAccountChange{addr})
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}
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func (j *journal) accessListAddSlot(addr common.Address, slot common.Hash) {
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j.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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type (
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// Changes to the account trie.
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createObjectChange struct {
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account common.Address
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}
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// createContractChange represents an account becoming a contract-account.
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// This event happens prior to executing initcode. The journal-event simply
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// manages the created-flag, in order to allow same-tx destruction.
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createContractChange struct {
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account common.Address
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}
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selfDestructChange struct {
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account common.Address
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}
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// Changes to individual accounts.
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balanceChange struct {
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account common.Address
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prev *uint256.Int
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}
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nonceChange struct {
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account common.Address
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prev uint64
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}
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storageChange struct {
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account common.Address
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key common.Hash
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prevvalue common.Hash
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origvalue common.Hash
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}
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codeChange struct {
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account common.Address
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prevCode []byte
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}
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// Changes to other state values.
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refundChange struct {
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prev uint64
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}
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addLogChange struct {
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txhash common.Hash
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}
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touchChange struct {
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account common.Address
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}
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// Changes to the access list
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accessListAddAccountChange struct {
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address common.Address
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}
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accessListAddSlotChange struct {
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address common.Address
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slot common.Hash
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}
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// Changes to transient storage
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transientStorageChange struct {
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account common.Address
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key, prevalue common.Hash
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}
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)
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func (ch createObjectChange) revert(s *StateDB) {
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delete(s.stateObjects, ch.account)
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}
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func (ch createObjectChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch createObjectChange) copy() journalEntry {
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return createObjectChange{
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account: ch.account,
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}
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}
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func (ch createContractChange) revert(s *StateDB) {
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s.getStateObject(ch.account).newContract = false
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}
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func (ch createContractChange) dirtied() (common.Address, bool) {
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return common.Address{}, false
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}
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func (ch createContractChange) copy() journalEntry {
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return createContractChange{
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account: ch.account,
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}
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}
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func (ch selfDestructChange) revert(s *StateDB) {
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obj := s.getStateObject(ch.account)
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if obj != nil {
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obj.selfDestructed = false
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}
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}
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func (ch selfDestructChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch selfDestructChange) copy() journalEntry {
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return selfDestructChange{
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account: ch.account,
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}
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}
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var ripemd = common.HexToAddress("0000000000000000000000000000000000000003")
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func (ch touchChange) revert(s *StateDB) {
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}
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func (ch touchChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch touchChange) copy() journalEntry {
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return touchChange{
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account: ch.account,
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}
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}
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func (ch balanceChange) revert(s *StateDB) {
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s.getStateObject(ch.account).setBalance(ch.prev)
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}
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func (ch balanceChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch balanceChange) copy() journalEntry {
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return balanceChange{
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account: ch.account,
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prev: new(uint256.Int).Set(ch.prev),
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}
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}
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func (ch nonceChange) revert(s *StateDB) {
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s.getStateObject(ch.account).setNonce(ch.prev)
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}
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func (ch nonceChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch nonceChange) copy() journalEntry {
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return nonceChange{
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account: ch.account,
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prev: ch.prev,
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}
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}
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func (ch codeChange) revert(s *StateDB) {
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s.getStateObject(ch.account).setCode(crypto.Keccak256Hash(ch.prevCode), ch.prevCode)
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}
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func (ch codeChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch codeChange) copy() journalEntry {
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return codeChange{
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account: ch.account,
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prevCode: ch.prevCode,
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}
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}
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func (ch storageChange) revert(s *StateDB) {
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s.getStateObject(ch.account).setState(ch.key, ch.prevvalue, ch.origvalue)
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}
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func (ch storageChange) dirtied() (common.Address, bool) {
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return ch.account, true
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}
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func (ch storageChange) copy() journalEntry {
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return storageChange{
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account: ch.account,
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key: ch.key,
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prevvalue: ch.prevvalue,
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origvalue: ch.origvalue,
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}
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}
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func (ch transientStorageChange) revert(s *StateDB) {
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s.setTransientState(ch.account, ch.key, ch.prevalue)
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}
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func (ch transientStorageChange) dirtied() (common.Address, bool) {
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return common.Address{}, false
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}
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func (ch transientStorageChange) copy() journalEntry {
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return transientStorageChange{
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account: ch.account,
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key: ch.key,
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prevalue: ch.prevalue,
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}
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}
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func (ch refundChange) revert(s *StateDB) {
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s.refund = ch.prev
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}
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func (ch refundChange) dirtied() (common.Address, bool) {
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return common.Address{}, false
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}
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func (ch refundChange) copy() journalEntry {
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return refundChange{
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prev: ch.prev,
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}
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}
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func (ch addLogChange) revert(s *StateDB) {
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logs := s.logs[ch.txhash]
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if len(logs) == 1 {
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delete(s.logs, ch.txhash)
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} else {
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|
s.logs[ch.txhash] = logs[:len(logs)-1]
|
|
}
|
|
s.logSize--
|
|
}
|
|
|
|
func (ch addLogChange) dirtied() (common.Address, bool) {
|
|
return common.Address{}, false
|
|
}
|
|
|
|
func (ch addLogChange) copy() journalEntry {
|
|
return addLogChange{
|
|
txhash: ch.txhash,
|
|
}
|
|
}
|
|
|
|
func (ch accessListAddAccountChange) revert(s *StateDB) {
|
|
/*
|
|
One important invariant here, is that whenever a (addr, slot) is added, if the
|
|
addr is not already present, the add causes two journal entries:
|
|
- one for the address,
|
|
- one for the (address,slot)
|
|
Therefore, when unrolling the change, we can always blindly delete the
|
|
(addr) at this point, since no storage adds can remain when come upon
|
|
a single (addr) change.
|
|
*/
|
|
s.accessList.DeleteAddress(ch.address)
|
|
}
|
|
|
|
func (ch accessListAddAccountChange) dirtied() (common.Address, bool) {
|
|
return common.Address{}, false
|
|
}
|
|
|
|
func (ch accessListAddAccountChange) copy() journalEntry {
|
|
return accessListAddAccountChange{
|
|
address: ch.address,
|
|
}
|
|
}
|
|
|
|
func (ch accessListAddSlotChange) revert(s *StateDB) {
|
|
s.accessList.DeleteSlot(ch.address, ch.slot)
|
|
}
|
|
|
|
func (ch accessListAddSlotChange) dirtied() (common.Address, bool) {
|
|
return common.Address{}, false
|
|
}
|
|
|
|
func (ch accessListAddSlotChange) copy() journalEntry {
|
|
return accessListAddSlotChange{
|
|
address: ch.address,
|
|
slot: ch.slot,
|
|
}
|
|
}
|