| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463 |
- // Copyright 2019 The go-ethereum Authors
- // This file is part of the go-ethereum library.
- //
- // The go-ethereum library is free software: you can redistribute it and/or modify
- // it under the terms of the GNU Lesser General Public License as published by
- // the Free Software Foundation, either version 3 of the License, or
- // (at your option) any later version.
- //
- // The go-ethereum library is distributed in the hope that it will be useful,
- // but WITHOUT ANY WARRANTY; without even the implied warranty of
- // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
- // GNU Lesser General Public License for more details.
- //
- // You should have received a copy of the GNU Lesser General Public License
- // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
- package snapshot
- import (
- "encoding/binary"
- "fmt"
- "math"
- "math/rand"
- "sort"
- "sync"
- "time"
- "github.com/ethereum/go-ethereum/common"
- "github.com/ethereum/go-ethereum/log"
- "github.com/ethereum/go-ethereum/rlp"
- "github.com/steakknife/bloomfilter"
- )
- var (
- // aggregatorMemoryLimit is the maximum size of the bottom-most diff layer
- // that aggregates the writes from above until it's flushed into the disk
- // layer.
- //
- // Note, bumping this up might drastically increase the size of the bloom
- // filters that's stored in every diff layer. Don't do that without fully
- // understanding all the implications.
- aggregatorMemoryLimit = uint64(4 * 1024 * 1024)
- // aggregatorItemLimit is an approximate number of items that will end up
- // in the agregator layer before it's flushed out to disk. A plain account
- // weighs around 14B (+hash), a storage slot 32B (+hash), so 50 is a very
- // rough average of what we might see.
- aggregatorItemLimit = aggregatorMemoryLimit / 55
- // bloomTargetError is the target false positive rate when the aggregator
- // layer is at its fullest. The actual value will probably move around up
- // and down from this number, it's mostly a ballpark figure.
- //
- // Note, dropping this down might drastically increase the size of the bloom
- // filters that's stored in every diff layer. Don't do that without fully
- // understanding all the implications.
- bloomTargetError = 0.02
- // bloomSize is the ideal bloom filter size given the maximum number of items
- // it's expected to hold and the target false positive error rate.
- bloomSize = math.Ceil(float64(aggregatorItemLimit) * math.Log(bloomTargetError) / math.Log(1/math.Pow(2, math.Log(2))))
- // bloomFuncs is the ideal number of bits a single entry should set in the
- // bloom filter to keep its size to a minimum (given it's size and maximum
- // entry count).
- bloomFuncs = math.Round((bloomSize / float64(aggregatorItemLimit)) * math.Log(2))
- // bloomHashesOffset is a runtime constant which determines which part of the
- // the account/storage hash the hasher functions looks at, to determine the
- // bloom key for an account/slot. This is randomized at init(), so that the
- // global population of nodes do not all display the exact same behaviour with
- // regards to bloom content
- bloomHasherOffset = 0
- )
- func init() {
- // Init bloomHasherOffset in the range [0:24] (requires 8 bytes)
- bloomHasherOffset = rand.Intn(25)
- }
- // diffLayer represents a collection of modifications made to a state snapshot
- // after running a block on top. It contains one sorted list for the account trie
- // and one-one list for each storage tries.
- //
- // The goal of a diff layer is to act as a journal, tracking recent modifications
- // made to the state, that have not yet graduated into a semi-immutable state.
- type diffLayer struct {
- origin *diskLayer // Base disk layer to directly use on bloom misses
- parent snapshot // Parent snapshot modified by this one, never nil
- memory uint64 // Approximate guess as to how much memory we use
- root common.Hash // Root hash to which this snapshot diff belongs to
- stale bool // Signals that the layer became stale (state progressed)
- accountList []common.Hash // List of account for iteration. If it exists, it's sorted, otherwise it's nil
- accountData map[common.Hash][]byte // Keyed accounts for direct retrival (nil means deleted)
- storageList map[common.Hash][]common.Hash // List of storage slots for iterated retrievals, one per account. Any existing lists are sorted if non-nil
- storageData map[common.Hash]map[common.Hash][]byte // Keyed storage slots for direct retrival. one per account (nil means deleted)
- diffed *bloomfilter.Filter // Bloom filter tracking all the diffed items up to the disk layer
- lock sync.RWMutex
- }
- // accountBloomHasher is a wrapper around a common.Hash to satisfy the interface
- // API requirements of the bloom library used. It's used to convert an account
- // hash into a 64 bit mini hash.
- type accountBloomHasher common.Hash
- func (h accountBloomHasher) Write(p []byte) (n int, err error) { panic("not implemented") }
- func (h accountBloomHasher) Sum(b []byte) []byte { panic("not implemented") }
- func (h accountBloomHasher) Reset() { panic("not implemented") }
- func (h accountBloomHasher) BlockSize() int { panic("not implemented") }
- func (h accountBloomHasher) Size() int { return 8 }
- func (h accountBloomHasher) Sum64() uint64 {
- return binary.BigEndian.Uint64(h[bloomHasherOffset : bloomHasherOffset+8])
- }
- // storageBloomHasher is a wrapper around a [2]common.Hash to satisfy the interface
- // API requirements of the bloom library used. It's used to convert an account
- // hash into a 64 bit mini hash.
- type storageBloomHasher [2]common.Hash
- func (h storageBloomHasher) Write(p []byte) (n int, err error) { panic("not implemented") }
- func (h storageBloomHasher) Sum(b []byte) []byte { panic("not implemented") }
- func (h storageBloomHasher) Reset() { panic("not implemented") }
- func (h storageBloomHasher) BlockSize() int { panic("not implemented") }
- func (h storageBloomHasher) Size() int { return 8 }
- func (h storageBloomHasher) Sum64() uint64 {
- return binary.BigEndian.Uint64(h[0][bloomHasherOffset:bloomHasherOffset+8]) ^
- binary.BigEndian.Uint64(h[1][bloomHasherOffset:bloomHasherOffset+8])
- }
- // newDiffLayer creates a new diff on top of an existing snapshot, whether that's a low
- // level persistent database or a hierarchical diff already.
- func newDiffLayer(parent snapshot, root common.Hash, accounts map[common.Hash][]byte, storage map[common.Hash]map[common.Hash][]byte) *diffLayer {
- // Create the new layer with some pre-allocated data segments
- dl := &diffLayer{
- parent: parent,
- root: root,
- accountData: accounts,
- storageData: storage,
- }
- switch parent := parent.(type) {
- case *diskLayer:
- dl.rebloom(parent)
- case *diffLayer:
- dl.rebloom(parent.origin)
- default:
- panic("unknown parent type")
- }
- // Determine memory size and track the dirty writes
- for _, data := range accounts {
- dl.memory += uint64(common.HashLength + len(data))
- snapshotDirtyAccountWriteMeter.Mark(int64(len(data)))
- }
- // Fill the storage hashes and sort them for the iterator
- dl.storageList = make(map[common.Hash][]common.Hash)
- for accountHash, slots := range storage {
- // If the slots are nil, sanity check that it's a deleted account
- if slots == nil {
- // Ensure that the account was just marked as deleted
- if account, ok := accounts[accountHash]; account != nil || !ok {
- panic(fmt.Sprintf("storage in %#x nil, but account conflicts (%#x, exists: %v)", accountHash, account, ok))
- }
- // Everything ok, store the deletion mark and continue
- dl.storageList[accountHash] = nil
- continue
- }
- // Storage slots are not nil so entire contract was not deleted, ensure the
- // account was just updated.
- if account, ok := accounts[accountHash]; account == nil || !ok {
- log.Error(fmt.Sprintf("storage in %#x exists, but account nil (exists: %v)", accountHash, ok))
- }
- // Determine memory size and track the dirty writes
- for _, data := range slots {
- dl.memory += uint64(common.HashLength + len(data))
- snapshotDirtyStorageWriteMeter.Mark(int64(len(data)))
- }
- }
- dl.memory += uint64(len(dl.storageList) * common.HashLength)
- return dl
- }
- // rebloom discards the layer's current bloom and rebuilds it from scratch based
- // on the parent's and the local diffs.
- func (dl *diffLayer) rebloom(origin *diskLayer) {
- dl.lock.Lock()
- defer dl.lock.Unlock()
- defer func(start time.Time) {
- snapshotBloomIndexTimer.Update(time.Since(start))
- }(time.Now())
- // Inject the new origin that triggered the rebloom
- dl.origin = origin
- // Retrieve the parent bloom or create a fresh empty one
- if parent, ok := dl.parent.(*diffLayer); ok {
- parent.lock.RLock()
- dl.diffed, _ = parent.diffed.Copy()
- parent.lock.RUnlock()
- } else {
- dl.diffed, _ = bloomfilter.New(uint64(bloomSize), uint64(bloomFuncs))
- }
- // Iterate over all the accounts and storage slots and index them
- for hash := range dl.accountData {
- dl.diffed.Add(accountBloomHasher(hash))
- }
- for accountHash, slots := range dl.storageData {
- for storageHash := range slots {
- dl.diffed.Add(storageBloomHasher{accountHash, storageHash})
- }
- }
- // Calculate the current false positive rate and update the error rate meter.
- // This is a bit cheating because subsequent layers will overwrite it, but it
- // should be fine, we're only interested in ballpark figures.
- k := float64(dl.diffed.K())
- n := float64(dl.diffed.N())
- m := float64(dl.diffed.M())
- snapshotBloomErrorGauge.Update(math.Pow(1.0-math.Exp((-k)*(n+0.5)/(m-1)), k))
- }
- // Root returns the root hash for which this snapshot was made.
- func (dl *diffLayer) Root() common.Hash {
- return dl.root
- }
- // Stale return whether this layer has become stale (was flattened across) or if
- // it's still live.
- func (dl *diffLayer) Stale() bool {
- dl.lock.RLock()
- defer dl.lock.RUnlock()
- return dl.stale
- }
- // Account directly retrieves the account associated with a particular hash in
- // the snapshot slim data format.
- func (dl *diffLayer) Account(hash common.Hash) (*Account, error) {
- data, err := dl.AccountRLP(hash)
- if err != nil {
- return nil, err
- }
- if len(data) == 0 { // can be both nil and []byte{}
- return nil, nil
- }
- account := new(Account)
- if err := rlp.DecodeBytes(data, account); err != nil {
- panic(err)
- }
- return account, nil
- }
- // AccountRLP directly retrieves the account RLP associated with a particular
- // hash in the snapshot slim data format.
- func (dl *diffLayer) AccountRLP(hash common.Hash) ([]byte, error) {
- // Check the bloom filter first whether there's even a point in reaching into
- // all the maps in all the layers below
- dl.lock.RLock()
- hit := dl.diffed.Contains(accountBloomHasher(hash))
- dl.lock.RUnlock()
- // If the bloom filter misses, don't even bother with traversing the memory
- // diff layers, reach straight into the bottom persistent disk layer
- if !hit {
- snapshotBloomAccountMissMeter.Mark(1)
- return dl.origin.AccountRLP(hash)
- }
- // The bloom filter hit, start poking in the internal maps
- return dl.accountRLP(hash)
- }
- // accountRLP is an internal version of AccountRLP that skips the bloom filter
- // checks and uses the internal maps to try and retrieve the data. It's meant
- // to be used if a higher layer's bloom filter hit already.
- func (dl *diffLayer) accountRLP(hash common.Hash) ([]byte, error) {
- dl.lock.RLock()
- defer dl.lock.RUnlock()
- // If the layer was flattened into, consider it invalid (any live reference to
- // the original should be marked as unusable).
- if dl.stale {
- return nil, ErrSnapshotStale
- }
- // If the account is known locally, return it. Note, a nil account means it was
- // deleted, and is a different notion than an unknown account!
- if data, ok := dl.accountData[hash]; ok {
- snapshotDirtyAccountHitMeter.Mark(1)
- snapshotDirtyAccountReadMeter.Mark(int64(len(data)))
- snapshotBloomAccountTrueHitMeter.Mark(1)
- return data, nil
- }
- // Account unknown to this diff, resolve from parent
- if diff, ok := dl.parent.(*diffLayer); ok {
- return diff.accountRLP(hash)
- }
- // Failed to resolve through diff layers, mark a bloom error and use the disk
- snapshotBloomAccountFalseHitMeter.Mark(1)
- return dl.parent.AccountRLP(hash)
- }
- // Storage directly retrieves the storage data associated with a particular hash,
- // within a particular account. If the slot is unknown to this diff, it's parent
- // is consulted.
- func (dl *diffLayer) Storage(accountHash, storageHash common.Hash) ([]byte, error) {
- // Check the bloom filter first whether there's even a point in reaching into
- // all the maps in all the layers below
- dl.lock.RLock()
- hit := dl.diffed.Contains(storageBloomHasher{accountHash, storageHash})
- dl.lock.RUnlock()
- // If the bloom filter misses, don't even bother with traversing the memory
- // diff layers, reach straight into the bottom persistent disk layer
- if !hit {
- snapshotBloomStorageMissMeter.Mark(1)
- return dl.origin.Storage(accountHash, storageHash)
- }
- // The bloom filter hit, start poking in the internal maps
- return dl.storage(accountHash, storageHash)
- }
- // storage is an internal version of Storage that skips the bloom filter checks
- // and uses the internal maps to try and retrieve the data. It's meant to be
- // used if a higher layer's bloom filter hit already.
- func (dl *diffLayer) storage(accountHash, storageHash common.Hash) ([]byte, error) {
- dl.lock.RLock()
- defer dl.lock.RUnlock()
- // If the layer was flattened into, consider it invalid (any live reference to
- // the original should be marked as unusable).
- if dl.stale {
- return nil, ErrSnapshotStale
- }
- // If the account is known locally, try to resolve the slot locally. Note, a nil
- // account means it was deleted, and is a different notion than an unknown account!
- if storage, ok := dl.storageData[accountHash]; ok {
- if storage == nil {
- snapshotDirtyStorageHitMeter.Mark(1)
- snapshotBloomStorageTrueHitMeter.Mark(1)
- return nil, nil
- }
- if data, ok := storage[storageHash]; ok {
- snapshotDirtyStorageHitMeter.Mark(1)
- snapshotDirtyStorageReadMeter.Mark(int64(len(data)))
- snapshotBloomStorageTrueHitMeter.Mark(1)
- return data, nil
- }
- }
- // Storage slot unknown to this diff, resolve from parent
- if diff, ok := dl.parent.(*diffLayer); ok {
- return diff.storage(accountHash, storageHash)
- }
- // Failed to resolve through diff layers, mark a bloom error and use the disk
- snapshotBloomStorageFalseHitMeter.Mark(1)
- return dl.parent.Storage(accountHash, storageHash)
- }
- // Update creates a new layer on top of the existing snapshot diff tree with
- // the specified data items.
- func (dl *diffLayer) Update(blockRoot common.Hash, accounts map[common.Hash][]byte, storage map[common.Hash]map[common.Hash][]byte) *diffLayer {
- return newDiffLayer(dl, blockRoot, accounts, storage)
- }
- // flatten pushes all data from this point downwards, flattening everything into
- // a single diff at the bottom. Since usually the lowermost diff is the largest,
- // the flattening bulds up from there in reverse.
- func (dl *diffLayer) flatten() snapshot {
- // If the parent is not diff, we're the first in line, return unmodified
- parent, ok := dl.parent.(*diffLayer)
- if !ok {
- return dl
- }
- // Parent is a diff, flatten it first (note, apart from weird corned cases,
- // flatten will realistically only ever merge 1 layer, so there's no need to
- // be smarter about grouping flattens together).
- parent = parent.flatten().(*diffLayer)
- parent.lock.Lock()
- defer parent.lock.Unlock()
- // Before actually writing all our data to the parent, first ensure that the
- // parent hasn't been 'corrupted' by someone else already flattening into it
- if parent.stale {
- panic("parent diff layer is stale") // we've flattened into the same parent from two children, boo
- }
- parent.stale = true
- // Overwrite all the updated accounts blindly, merge the sorted list
- for hash, data := range dl.accountData {
- parent.accountData[hash] = data
- }
- // Overwrite all the updates storage slots (individually)
- for accountHash, storage := range dl.storageData {
- // If storage didn't exist (or was deleted) in the parent; or if the storage
- // was freshly deleted in the child, overwrite blindly
- if parent.storageData[accountHash] == nil || storage == nil {
- parent.storageData[accountHash] = storage
- continue
- }
- // Storage exists in both parent and child, merge the slots
- comboData := parent.storageData[accountHash]
- for storageHash, data := range storage {
- comboData[storageHash] = data
- }
- parent.storageData[accountHash] = comboData
- }
- // Return the combo parent
- return &diffLayer{
- parent: parent.parent,
- origin: parent.origin,
- root: dl.root,
- storageList: parent.storageList,
- storageData: parent.storageData,
- accountList: parent.accountList,
- accountData: parent.accountData,
- diffed: dl.diffed,
- memory: parent.memory + dl.memory,
- }
- }
- // AccountList returns a sorted list of all accounts in this difflayer.
- func (dl *diffLayer) AccountList() []common.Hash {
- dl.lock.Lock()
- defer dl.lock.Unlock()
- if dl.accountList != nil {
- return dl.accountList
- }
- accountList := make([]common.Hash, len(dl.accountData))
- i := 0
- for k, _ := range dl.accountData {
- accountList[i] = k
- i++
- // This would be a pretty good opportunity to also
- // calculate the size, if we want to
- }
- sort.Sort(hashes(accountList))
- dl.accountList = accountList
- return dl.accountList
- }
- // StorageList returns a sorted list of all storage slot hashes
- // in this difflayer for the given account.
- func (dl *diffLayer) StorageList(accountHash common.Hash) []common.Hash {
- dl.lock.Lock()
- defer dl.lock.Unlock()
- if dl.storageList[accountHash] != nil {
- return dl.storageList[accountHash]
- }
- accountStorageMap := dl.storageData[accountHash]
- accountStorageList := make([]common.Hash, len(accountStorageMap))
- i := 0
- for k, _ := range accountStorageMap {
- accountStorageList[i] = k
- i++
- // This would be a pretty good opportunity to also
- // calculate the size, if we want to
- }
- sort.Sort(hashes(accountStorageList))
- dl.storageList[accountHash] = accountStorageList
- return accountStorageList
- }
|