core, trie: finalize the new trie node-caching db layer

This commit is contained in:
Péter Szilágyi 2018-01-17 10:25:31 +02:00
parent d2ec96e861
commit 34d766a243
No known key found for this signature in database
GPG key ID: E9AE538CEDF8293D
45 changed files with 849 additions and 790 deletions

View file

@ -39,6 +39,7 @@ import (
"github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rpc"
"github.com/ethereum/go-ethereum/trie"
)
// This nil assignment ensures compile time that SimulatedBackend implements bind.ContractBackend.
@ -103,7 +104,7 @@ func (b *SimulatedBackend) Rollback() {
func (b *SimulatedBackend) rollback() {
blocks, _ := core.GenerateChain(b.config, b.blockchain.CurrentBlock(), ethash.NewFaker(), b.database, 1, func(int, *core.BlockGen) {})
b.pendingBlock = blocks[0]
b.pendingState, _ = state.New(b.pendingBlock.Root(), state.NewDatabase(b.database, nil))
b.pendingState, _ = state.New(b.pendingBlock.Root(), state.NewDatabase(trie.NewDatabase(b.database)))
}
// CodeAt returns the code associated with a certain account in the blockchain.
@ -310,7 +311,7 @@ func (b *SimulatedBackend) SendTransaction(ctx context.Context, tx *types.Transa
block.AddTx(tx)
})
b.pendingBlock = blocks[0]
b.pendingState, _ = state.New(b.pendingBlock.Root(), state.NewDatabase(b.database, nil))
b.pendingState, _ = state.New(b.pendingBlock.Root(), state.NewDatabase(trie.NewDatabase(b.database)))
return nil
}
@ -387,7 +388,7 @@ func (b *SimulatedBackend) AdjustTime(adjustment time.Duration) error {
block.OffsetTime(int64(adjustment.Seconds()))
})
b.pendingBlock = blocks[0]
b.pendingState, _ = state.New(b.pendingBlock.Root(), state.NewDatabase(b.database, nil))
b.pendingState, _ = state.New(b.pendingBlock.Root(), state.NewDatabase(trie.NewDatabase(b.database)))
return nil
}

View file

@ -37,6 +37,7 @@ import (
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
cli "gopkg.in/urfave/cli.v1"
)
@ -96,11 +97,11 @@ func runCmd(ctx *cli.Context) error {
}
if ctx.GlobalString(GenesisFlag.Name) != "" {
gen := readGenesis(ctx.GlobalString(GenesisFlag.Name))
_, statedb = gen.ToBlock()
_, statedb, _ = gen.ToBlock()
chainConfig = gen.Config
} else {
db, _ := ethdb.NewMemDatabase()
statedb, _ = state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ = state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
}
if ctx.GlobalString(SenderFlag.Name) != "" {
sender = common.HexToAddress(ctx.GlobalString(SenderFlag.Name))

View file

@ -379,7 +379,7 @@ func dump(ctx *cli.Context) error {
fmt.Println("{}")
utils.Fatalf("block not found")
} else {
state, err := state.New(block.Root(), state.NewDatabase(chainDb, nil))
state, err := state.New(block.Root(), state.NewDatabase(trie.NewDatabase(chainDb)))
if err != nil {
utils.Fatalf("could not create new state: %v", err)
}

View file

@ -102,6 +102,8 @@ type BlockChain struct {
blockCache *lru.Cache // Cache for the most recent entire blocks
futureBlocks *lru.Cache // future blocks are blocks added for later processing
procTime time.Duration // Accumulator for measuring total block processing for the trie node dumping
quit chan struct{} // blockchain quit channel
running int32 // running must be called atomically
// procInterrupt must be atomically called
@ -129,7 +131,7 @@ func NewBlockChain(chainDb ethdb.Database, config *params.ChainConfig, engine co
bc := &BlockChain{
config: config,
chainDb: chainDb,
stateCache: state.NewDatabase(chainDb, trie.NewNodePool()),
stateCache: state.NewDatabase(trie.NewDatabase(chainDb)),
quit: make(chan struct{}),
bodyCache: bodyCache,
bodyRLPCache: bodyRLPCache,
@ -292,7 +294,7 @@ func (bc *BlockChain) FastSyncCommitHead(hash common.Hash) error {
if block == nil {
return fmt.Errorf("non existent block [%x…]", hash[:4])
}
if _, err := trie.NewSecure(block.Root(), bc.chainDb, nil, 0); err != nil {
if _, err := trie.NewSecure(block.Root(), bc.stateCache.TrieDB(), 0); err != nil {
return err
}
// If all checks out, manually set the head block
@ -594,7 +596,7 @@ func (bc *BlockChain) Stop() {
root := bc.CurrentHeader().Root
batch := bc.chainDb.NewBatch()
if err := bc.stateCache.NodePool().Commit(root, batch); err != nil {
if err := bc.stateCache.TrieDB().Commit(root, batch); err != nil {
log.Error("Failed to commit latest state trie", "err", err)
}
if err := batch.Write(); err != nil {
@ -776,6 +778,8 @@ func (bc *BlockChain) InsertReceiptChain(blockChain types.Blocks, receiptChain [
return 0, nil
}
var lastWrite uint64
// WriteBlock writes the block to the chain.
func (bc *BlockChain) WriteBlockAndState(block *types.Block, receipts []*types.Receipt, state *state.StateDB) (status WriteStatus, err error) {
bc.wg.Add(1)
@ -802,18 +806,37 @@ func (bc *BlockChain) WriteBlockAndState(block *types.Block, receipts []*types.R
if err := WriteBlock(batch, block); err != nil {
return NonStatTy, err
}
root, err := state.CommitTo(batch, bc.config.IsEIP158(block.Number()))
root, err := state.Commit(bc.config.IsEIP158(block.Number()))
if err != nil {
return NonStatTy, err
}
pool := bc.stateCache.NodePool()
pool.Reference(root, common.Hash{}) // metadata reference to keep trie alive
if number := block.NumberU64(); number > 192 {
if (number-192)%128 == 0 {
pool.Commit(root, batch)
db := bc.stateCache.TrieDB()
var (
writeRetention = uint64(128) // Number of trie nodes we need to retain in memory
memoryAllowance = common.StorageSize(64 * 1024 * 1024) // Memory allowance below which to avoid writing to disk
timeAllowance = 3 * time.Minute // Time allowance below which to avoid writing to disk
)
db.Reference(root, common.Hash{}) // metadata reference to keep trie alive
if current := block.NumberU64(); current > writeRetention {
// Find the next state trie we need to get rid of or commit
header := bc.GetHeaderByNumber(current - writeRetention)
chosen := header.Number.Uint64()
// Only write to disk if we exceeded our memory allowance *and* also have at
// least a given number of tries gapped.
if (db.Size() > memoryAllowance || bc.procTime > timeAllowance) && chosen >= lastWrite+writeRetention {
db.Commit(header.Root, batch)
lastWrite = chosen
bc.procTime = 0
}
// Garbage collect anything below our required write retention
db.Dereference(header.Root, common.Hash{})
if current%10000 == 0 {
log.Warn("Current trie pruning state", "size", db.Size(), "elapsed", bc.procTime)
}
header := bc.GetHeaderByNumber(block.NumberU64() - 192)
pool.Dereference(header.Root, common.Hash{})
}
if err := WriteBlockReceipts(batch, block.Hash(), block.NumberU64(), receipts); err != nil {
return NonStatTy, err
@ -983,6 +1006,8 @@ func (bc *BlockChain) insertChain(chain types.Blocks) (int, []interface{}, []*ty
bc.reportBlock(block, receipts, err)
return i, events, coalescedLogs, err
}
bc.procTime += time.Since(bstart)
// Write the block to the chain and get the status.
status, err := bc.WriteBlockAndState(block, receipts, state)
if err != nil {

View file

@ -150,7 +150,7 @@ func testBlockChainImport(chain types.Blocks, blockchain *BlockChain) error {
blockchain.mu.Lock()
WriteTd(blockchain.chainDb, block.Hash(), block.NumberU64(), new(big.Int).Add(block.Difficulty(), blockchain.GetTdByHash(block.ParentHash())))
WriteBlock(blockchain.chainDb, block)
statedb.CommitTo(blockchain.chainDb, false)
statedb.Commit(false)
blockchain.mu.Unlock()
}
return nil

View file

@ -28,6 +28,7 @@ import (
"github.com/ethereum/go-ethereum/core/vm"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
)
// So we can deterministically seed different blockchains
@ -162,6 +163,8 @@ func GenerateChain(config *params.ChainConfig, parent *types.Block, engine conse
if config == nil {
config = params.TestChainConfig
}
triedb := trie.NewDatabase(db)
blocks, receipts := make(types.Blocks, n), make([]types.Receipts, n)
genblock := func(i int, parent *types.Block, statedb *state.StateDB) (*types.Block, types.Receipts) {
// TODO(karalabe): This is needed for clique, which depends on multiple blocks.
@ -192,16 +195,19 @@ func GenerateChain(config *params.ChainConfig, parent *types.Block, engine conse
if b.engine != nil {
block, _ := b.engine.Finalize(b.chainReader, b.header, statedb, b.txs, b.uncles, b.receipts)
// Write state changes to db
_, err := statedb.CommitTo(db, config.IsEIP158(b.header.Number))
root, err := statedb.Commit(config.IsEIP158(b.header.Number))
if err != nil {
panic(fmt.Sprintf("state write error: %v", err))
}
if err := triedb.Commit(root, db); err != nil {
panic(fmt.Sprintf("trie write error: %v", err))
}
return block, b.receipts
}
return nil, nil
}
for i := 0; i < n; i++ {
statedb, err := state.New(parent.Root(), state.NewDatabase(db, nil))
statedb, err := state.New(parent.Root(), state.NewDatabase(triedb))
if err != nil {
panic(err)
}

View file

@ -79,7 +79,7 @@ func TestDAOForkRangeExtradata(t *testing.T) {
if _, err := bc.InsertChain(blocks); err != nil {
t.Fatalf("failed to import contra-fork chain for expansion: %v", err)
}
if err := bc.stateCache.NodePool().Commit(bc.CurrentHeader().Root, db); err != nil {
if err := bc.stateCache.TrieDB().Commit(bc.CurrentHeader().Root, db); err != nil {
t.Fatalf("failed to commit contra-fork head for expansion: %v", err)
}
blocks, _ = GenerateChain(&proConf, conBc.CurrentBlock(), ethash.NewFaker(), db, 1, func(i int, gen *BlockGen) {})
@ -104,7 +104,7 @@ func TestDAOForkRangeExtradata(t *testing.T) {
if _, err := bc.InsertChain(blocks); err != nil {
t.Fatalf("failed to import pro-fork chain for expansion: %v", err)
}
if err := bc.stateCache.NodePool().Commit(bc.CurrentHeader().Root, db); err != nil {
if err := bc.stateCache.TrieDB().Commit(bc.CurrentHeader().Root, db); err != nil {
t.Fatalf("failed to commit pro-fork head for expansion: %v", err)
}
blocks, _ = GenerateChain(&conConf, proBc.CurrentBlock(), ethash.NewFaker(), db, 1, func(i int, gen *BlockGen) {})
@ -130,7 +130,7 @@ func TestDAOForkRangeExtradata(t *testing.T) {
if _, err := bc.InsertChain(blocks); err != nil {
t.Fatalf("failed to import contra-fork chain for expansion: %v", err)
}
if err := bc.stateCache.NodePool().Commit(bc.CurrentHeader().Root, db); err != nil {
if err := bc.stateCache.TrieDB().Commit(bc.CurrentHeader().Root, db); err != nil {
t.Fatalf("failed to commit contra-fork head for expansion: %v", err)
}
blocks, _ = GenerateChain(&proConf, conBc.CurrentBlock(), ethash.NewFaker(), db, 1, func(i int, gen *BlockGen) {})
@ -150,7 +150,7 @@ func TestDAOForkRangeExtradata(t *testing.T) {
if _, err := bc.InsertChain(blocks); err != nil {
t.Fatalf("failed to import pro-fork chain for expansion: %v", err)
}
if err := bc.stateCache.NodePool().Commit(bc.CurrentHeader().Root, db); err != nil {
if err := bc.stateCache.TrieDB().Commit(bc.CurrentHeader().Root, db); err != nil {
t.Fatalf("failed to commit pro-fork head for expansion: %v", err)
}
blocks, _ = GenerateChain(&conConf, proBc.CurrentBlock(), ethash.NewFaker(), db, 1, func(i int, gen *BlockGen) {})

View file

@ -34,6 +34,7 @@ import (
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/trie"
)
//go:generate gencodec -type Genesis -field-override genesisSpecMarshaling -out gen_genesis.go
@ -169,7 +170,7 @@ func SetupGenesisBlock(db ethdb.Database, genesis *Genesis) (*params.ChainConfig
// Check whether the genesis block is already written.
if genesis != nil {
block, _ := genesis.ToBlock()
block, _, _ := genesis.ToBlock()
hash := block.Hash()
if hash != stored {
return genesis.Config, block.Hash(), &GenesisMismatchError{stored, hash}
@ -221,9 +222,10 @@ func (g *Genesis) configOrDefault(ghash common.Hash) *params.ChainConfig {
}
// ToBlock creates the block and state of a genesis specification.
func (g *Genesis) ToBlock() (*types.Block, *state.StateDB) {
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
func (g *Genesis) ToBlock() (*types.Block, *state.StateDB, *trie.Database) {
diskdb, _ := ethdb.NewMemDatabase()
triedb := trie.NewDatabase(diskdb)
statedb, _ := state.New(common.Hash{}, state.NewDatabase(triedb))
for addr, account := range g.Alloc {
statedb.AddBalance(addr, account.Balance)
statedb.SetCode(addr, account.Code)
@ -252,19 +254,22 @@ func (g *Genesis) ToBlock() (*types.Block, *state.StateDB) {
if g.Difficulty == nil {
head.Difficulty = params.GenesisDifficulty
}
return types.NewBlock(head, nil, nil, nil), statedb
return types.NewBlock(head, nil, nil, nil), statedb, triedb
}
// Commit writes the block and state of a genesis specification to the database.
// The block is committed as the canonical head block.
func (g *Genesis) Commit(db ethdb.Database) (*types.Block, error) {
block, statedb := g.ToBlock()
block, statedb, triedb := g.ToBlock()
if block.Number().Sign() != 0 {
return nil, fmt.Errorf("can't commit genesis block with number > 0")
}
if _, err := statedb.CommitTo(db, false); err != nil {
if _, err := statedb.Commit(false); err != nil {
return nil, fmt.Errorf("cannot write state: %v", err)
}
if err := triedb.Commit(block.Root(), db); err != nil {
return nil, err
}
if err := WriteTd(db, block.Hash(), block.NumberU64(), g.Difficulty); err != nil {
return nil, err
}

View file

@ -30,11 +30,11 @@ import (
)
func TestDefaultGenesisBlock(t *testing.T) {
block, _ := DefaultGenesisBlock().ToBlock()
block, _, _ := DefaultGenesisBlock().ToBlock()
if block.Hash() != params.MainnetGenesisHash {
t.Errorf("wrong mainnet genesis hash, got %v, want %v", block.Hash(), params.MainnetGenesisHash)
}
block, _ = DefaultTestnetGenesisBlock().ToBlock()
block, _, _ = DefaultTestnetGenesisBlock().ToBlock()
if block.Hash() != params.TestnetGenesisHash {
t.Errorf("wrong testnet genesis hash, got %v, want %v", block.Hash(), params.TestnetGenesisHash)
}

View file

@ -21,7 +21,6 @@ import (
"sync"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/trie"
lru "github.com/hashicorp/golang-lru"
)
@ -55,8 +54,8 @@ type Database interface {
// ContractCodeSize retrieves a particular contracts code's size.
ContractCodeSize(addrHash, codeHash common.Hash) (int, error)
// NodePool retrieves any intermediate trie-node caching layer.
NodePool() *trie.NodePool
// TrieDB retrieves the low level trie database used for data storage.
TrieDB() *trie.Database
}
// Trie is a Ethereum Merkle Trie.
@ -64,7 +63,7 @@ type Trie interface {
TryGet(key []byte) ([]byte, error)
TryUpdate(key, value []byte) error
TryDelete(key []byte) error
CommitTo(trie.DatabaseWriter) (common.Hash, error)
Commit(onleaf trie.LeafCallback) (common.Hash, error)
Hash() common.Hash
NodeIterator(startKey []byte) trie.NodeIterator
GetKey([]byte) []byte // TODO(fjl): remove this when SecureTrie is removed
@ -74,16 +73,18 @@ type Trie interface {
// concurrent use and retains cached trie nodes in memory. The pool is an optional
// intermediate trie-node memory pool between the low level storage layer and the
// high level trie abstraction.
func NewDatabase(db ethdb.Database, pool *trie.NodePool) Database {
func NewDatabase(db *trie.Database) Database {
csc, _ := lru.New(codeSizeCacheSize)
return &cachingDB{db: db, pastNodes: pool, codeSizeCache: csc}
return &cachingDB{
db: db,
codeSizeCache: csc,
}
}
type cachingDB struct {
db ethdb.Database
db *trie.Database
mu sync.Mutex
pastTries []*trie.SecureTrie
pastNodes *trie.NodePool
codeSizeCache *lru.Cache
}
@ -97,7 +98,7 @@ func (db *cachingDB) OpenTrie(root common.Hash) (Trie, error) {
return cachedTrie{db.pastTries[i].Copy(), db}, nil
}
}
tr, err := trie.NewSecure(root, db.db, db.pastNodes, MaxTrieCacheGen)
tr, err := trie.NewSecure(root, db.db, MaxTrieCacheGen)
if err != nil {
return nil, err
}
@ -118,7 +119,7 @@ func (db *cachingDB) pushTrie(t *trie.SecureTrie) {
// OpenStorageTrie opens the storage trie of an account.
func (db *cachingDB) OpenStorageTrie(addrHash, root common.Hash) (Trie, error) {
return trie.NewSecure(root, db.db, db.pastNodes, 0)
return trie.NewSecure(root, db.db, 0)
}
// CopyTrie returns an independent copy of the given trie.
@ -135,7 +136,7 @@ func (db *cachingDB) CopyTrie(t Trie) Trie {
// ContractCode retrieves a particular contract's code.
func (db *cachingDB) ContractCode(addrHash, codeHash common.Hash) ([]byte, error) {
code, err := db.db.Get(codeHash[:])
code, err := db.db.Node(codeHash)
if err == nil {
db.codeSizeCache.Add(codeHash, len(code))
}
@ -154,9 +155,9 @@ func (db *cachingDB) ContractCodeSize(addrHash, codeHash common.Hash) (int, erro
return len(code), err
}
// NodePool retrieves any intermediate trie-node caching layer.
func (db *cachingDB) NodePool() *trie.NodePool {
return db.pastNodes
// TrieDB retrieves any intermediate trie-node caching layer.
func (db *cachingDB) TrieDB() *trie.Database {
return db.db
}
// cachedTrie inserts its trie into a cachingDB on commit.
@ -165,8 +166,8 @@ type cachedTrie struct {
db *cachingDB
}
func (m cachedTrie) CommitTo(dbw trie.DatabaseWriter) (common.Hash, error) {
root, err := m.SecureTrie.CommitTo(dbw)
func (m cachedTrie) Commit(onleaf trie.LeafCallback) (common.Hash, error) {
root, err := m.SecureTrie.Commit(onleaf)
if err == nil {
m.db.pushTrie(m.SecureTrie)
}

View file

@ -21,12 +21,13 @@ import (
"testing"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/ethdb"
)
// Tests that the node iterator indeed walks over the entire database contents.
func TestNodeIteratorCoverage(t *testing.T) {
// Create some arbitrary test state to iterate
db, mem, root, _ := makeTestState()
db, root, _ := makeTestState()
state, err := New(root, db)
if err != nil {
@ -41,18 +42,16 @@ func TestNodeIteratorCoverage(t *testing.T) {
}
// Cross check the iterated hashes and the database/nodepool content
for hash := range hashes {
if db.NodePool().Fetch(hash) == nil {
if _, err := mem.Get(hash.Bytes()); err != nil {
t.Errorf("failed to retrieve reported node %x", hash)
}
if _, err := db.TrieDB().Node(hash); err != nil {
t.Errorf("failed to retrieve reported node %x", hash)
}
}
for _, hash := range db.NodePool().Nodes() {
for _, hash := range db.TrieDB().Nodes() {
if _, ok := hashes[hash]; !ok {
t.Errorf("state entry not reported %x", hash)
}
}
for _, key := range mem.Keys() {
for _, key := range db.TrieDB().DiskDB().(*ethdb.MemDatabase).Keys() {
if bytes.HasPrefix(key, []byte("secure-key-")) {
continue
}

View file

@ -27,8 +27,8 @@ import (
var addr = common.BytesToAddress([]byte("test"))
func create() (*ManagedState, *account) {
db, _ := ethdb.NewMemDatabase()
statedb, _ := New(common.Hash{}, NewDatabase(db, trie.NewNodePool()))
diskdb, _ := ethdb.NewMemDatabase()
statedb, _ := New(common.Hash{}, NewDatabase(trie.NewDatabase(diskdb)))
ms := ManageState(statedb)
ms.StateDB.SetNonce(addr, 100)
ms.accounts[addr] = newAccount(ms.StateDB.getStateObject(addr))

View file

@ -25,7 +25,6 @@ import (
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/trie"
)
var emptyCodeHash = crypto.Keccak256(nil)
@ -238,12 +237,12 @@ func (self *stateObject) updateRoot(db Database) {
// CommitTrie the storage trie of the object to dwb.
// This updates the trie root.
func (self *stateObject) CommitTrie(db Database, dbw trie.DatabaseWriter) error {
func (self *stateObject) CommitTrie(db Database) error {
self.updateTrie(db)
if self.dbErr != nil {
return self.dbErr
}
root, err := self.trie.CommitTo(dbw)
root, err := self.trie.Commit(nil)
if err == nil {
self.data.Root = root
}

View file

@ -49,7 +49,7 @@ func (s *StateSuite) TestDump(c *checker.C) {
// write some of them to the trie
s.state.updateStateObject(obj1)
s.state.updateStateObject(obj2)
s.state.CommitTo(s.db, false)
s.state.Commit(false)
// check that dump contains the state objects that are in trie
got := string(s.state.Dump())
@ -89,7 +89,7 @@ func (s *StateSuite) TestDump(c *checker.C) {
func (s *StateSuite) SetUpTest(c *checker.C) {
s.db, _ = ethdb.NewMemDatabase()
s.state, _ = New(common.Hash{}, NewDatabase(s.db, trie.NewNodePool()))
s.state, _ = New(common.Hash{}, NewDatabase(trie.NewDatabase(s.db)))
}
func (s *StateSuite) TestNull(c *checker.C) {
@ -98,7 +98,7 @@ func (s *StateSuite) TestNull(c *checker.C) {
//value := common.FromHex("0x823140710bf13990e4500136726d8b55")
var value common.Hash
s.state.SetState(address, common.Hash{}, value)
s.state.CommitTo(s.db, false)
s.state.Commit(false)
value = s.state.GetState(address, common.Hash{})
if !common.EmptyHash(value) {
c.Errorf("expected empty hash. got %x", value)
@ -134,8 +134,9 @@ func (s *StateSuite) TestSnapshotEmpty(c *checker.C) {
// use testing instead of checker because checker does not support
// printing/logging in tests (-check.vv does not work)
func TestSnapshot2(t *testing.T) {
db, _ := ethdb.NewMemDatabase()
state, _ := New(common.Hash{}, NewDatabase(db, trie.NewNodePool()))
diskdb, _ := ethdb.NewMemDatabase()
triedb := trie.NewDatabase(diskdb)
state, _ := New(common.Hash{}, NewDatabase(triedb))
stateobjaddr0 := toAddr([]byte("so0"))
stateobjaddr1 := toAddr([]byte("so1"))
@ -156,7 +157,7 @@ func TestSnapshot2(t *testing.T) {
so0.deleted = false
state.setStateObject(so0)
root, _ := state.CommitTo(db, false)
root, _ := state.Commit(false)
state.Reset(root)
// and one with deleted == true

View file

@ -36,6 +36,14 @@ type revision struct {
journalIndex int
}
var (
// emptyState is the known hash of an empty state trie entry.
emptyState = crypto.Keccak256Hash(nil)
// emptyCode is the known hash of the empty EVM bytecode.
emptyCode = crypto.Keccak256Hash(nil)
)
// StateDBs within the ethereum protocol are used to store anything
// within the merkle trie. StateDBs take care of caching and storing
// nested states. It's the general query interface to retrieve:
@ -568,8 +576,8 @@ func (s *StateDB) clearJournalAndRefund() {
s.refund = 0
}
// CommitTo writes the state to the given database.
func (s *StateDB) CommitTo(dbw trie.DatabaseWriter, deleteEmptyObjects bool) (root common.Hash, err error) {
// Commit writes the state to the underlying in-memory trie database.
func (s *StateDB) Commit(deleteEmptyObjects bool) (root common.Hash, err error) {
defer s.clearJournalAndRefund()
// Commit objects to the trie.
@ -583,13 +591,11 @@ func (s *StateDB) CommitTo(dbw trie.DatabaseWriter, deleteEmptyObjects bool) (ro
case isDirty:
// Write any contract code associated with the state object
if stateObject.code != nil && stateObject.dirtyCode {
if err := dbw.Put(stateObject.CodeHash(), stateObject.code); err != nil {
return common.Hash{}, err
}
s.db.TrieDB().Insert(common.BytesToHash(stateObject.CodeHash()), stateObject.code)
stateObject.dirtyCode = false
}
// Write any storage changes in the state object to its storage trie.
if err := stateObject.CommitTrie(s.db, dbw); err != nil {
if err := stateObject.CommitTrie(s.db); err != nil {
return common.Hash{}, err
}
// Update the object in the main account trie.
@ -598,7 +604,20 @@ func (s *StateDB) CommitTo(dbw trie.DatabaseWriter, deleteEmptyObjects bool) (ro
delete(s.stateObjectsDirty, addr)
}
// Write trie changes.
root, err = s.trie.CommitTo(dbw)
root, err = s.trie.Commit(func(leaf []byte, parent common.Hash) error {
var account Account
if err := rlp.DecodeBytes(leaf, &account); err != nil {
return nil
}
if account.Root != emptyState {
s.db.TrieDB().Reference(account.Root, parent)
}
code := common.BytesToHash(account.CodeHash)
if code != emptyCode {
s.db.TrieDB().Reference(code, parent)
}
return nil
})
log.Debug("Trie cache stats after commit", "misses", trie.CacheMisses(), "unloads", trie.CacheUnloads())
return root, err
}

View file

@ -41,7 +41,7 @@ import (
func TestUpdateLeaks(t *testing.T) {
// Create an empty state database
db, _ := ethdb.NewMemDatabase()
state, _ := New(common.Hash{}, NewDatabase(db, trie.NewNodePool()))
state, _ := New(common.Hash{}, NewDatabase(trie.NewDatabase(db)))
// Update it with some accounts
for i := byte(0); i < 255; i++ {
@ -69,8 +69,8 @@ func TestIntermediateLeaks(t *testing.T) {
// Create two state databases, one transitioning to the final state, the other final from the beginning
transDb, _ := ethdb.NewMemDatabase()
finalDb, _ := ethdb.NewMemDatabase()
transState, _ := New(common.Hash{}, NewDatabase(transDb, trie.NewNodePool()))
finalState, _ := New(common.Hash{}, NewDatabase(finalDb, trie.NewNodePool()))
transState, _ := New(common.Hash{}, NewDatabase(trie.NewDatabase(transDb)))
finalState, _ := New(common.Hash{}, NewDatabase(trie.NewDatabase(finalDb)))
modify := func(state *StateDB, addr common.Address, i, tweak byte) {
state.SetBalance(addr, big.NewInt(int64(11*i)+int64(tweak)))
@ -98,10 +98,10 @@ func TestIntermediateLeaks(t *testing.T) {
}
// Commit and cross check the databases.
if _, err := transState.CommitTo(transDb, false); err != nil {
if _, err := transState.Commit(false); err != nil {
t.Fatalf("failed to commit transition state: %v", err)
}
if _, err := finalState.CommitTo(finalDb, false); err != nil {
if _, err := finalState.Commit(false); err != nil {
t.Fatalf("failed to commit final state: %v", err)
}
for _, key := range finalDb.Keys() {
@ -123,8 +123,8 @@ func TestIntermediateLeaks(t *testing.T) {
// https://github.com/ethereum/go-ethereum/pull/15549.
func TestCopy(t *testing.T) {
// Create a random state test to copy and modify "independently"
mem, _ := ethdb.NewMemDatabase()
orig, _ := New(common.Hash{}, NewDatabase(mem, trie.NewNodePool()))
diskdb, _ := ethdb.NewMemDatabase()
orig, _ := New(common.Hash{}, NewDatabase(trie.NewDatabase(diskdb)))
for i := byte(0); i < 255; i++ {
obj := orig.GetOrNewStateObject(common.BytesToAddress([]byte{i}))
@ -335,9 +335,9 @@ func (test *snapshotTest) String() string {
func (test *snapshotTest) run() bool {
// Run all actions and create snapshots.
var (
db, _ = ethdb.NewMemDatabase()
mp = trie.NewNodePool()
state, _ = New(common.Hash{}, NewDatabase(db, trie.NewNodePool()))
diskdb, _ = ethdb.NewMemDatabase()
triedb = trie.NewDatabase(diskdb)
state, _ = New(common.Hash{}, NewDatabase(triedb))
snapshotRevs = make([]int, len(test.snapshots))
sindex = 0
)
@ -352,7 +352,7 @@ func (test *snapshotTest) run() bool {
// Revert all snapshots in reverse order. Each revert must yield a state
// that is equivalent to fresh state with all actions up the snapshot applied.
for sindex--; sindex >= 0; sindex-- {
checkstate, _ := New(common.Hash{}, NewDatabase(db, mp))
checkstate, _ := New(common.Hash{}, NewDatabase(triedb))
for _, action := range test.actions[:test.snapshots[sindex]] {
action.fn(action, checkstate)
}
@ -411,7 +411,7 @@ func (test *snapshotTest) checkEqual(state, checkstate *StateDB) error {
func (s *StateSuite) TestTouchDelete(c *check.C) {
s.state.GetOrNewStateObject(common.Address{})
root, _ := s.state.CommitTo(s.db, false)
root, _ := s.state.Commit(false)
s.state.Reset(root)
snapshot := s.state.Snapshot()
@ -419,7 +419,6 @@ func (s *StateSuite) TestTouchDelete(c *check.C) {
if len(s.state.stateObjectsDirty) != 1 {
c.Fatal("expected one dirty state object")
}
s.state.RevertToSnapshot(snapshot)
if len(s.state.stateObjectsDirty) != 0 {
c.Fatal("expected no dirty state object")

View file

@ -36,10 +36,10 @@ type testAccount struct {
}
// makeTestState create a sample test state to test node-wise reconstruction.
func makeTestState() (Database, *ethdb.MemDatabase, common.Hash, []*testAccount) {
func makeTestState() (Database, common.Hash, []*testAccount) {
// Create an empty state
mem, _ := ethdb.NewMemDatabase()
db := NewDatabase(mem, trie.NewNodePool())
diskdb, _ := ethdb.NewMemDatabase()
db := NewDatabase(trie.NewDatabase(diskdb))
state, _ := New(common.Hash{}, db)
// Fill it with some arbitrary data
@ -61,17 +61,17 @@ func makeTestState() (Database, *ethdb.MemDatabase, common.Hash, []*testAccount)
state.updateStateObject(obj)
accounts = append(accounts, acc)
}
root, _ := state.CommitTo(mem, false)
root, _ := state.Commit(false)
// Return the generated state
return db, mem, root, accounts
return db, root, accounts
}
// checkStateAccounts cross references a reconstructed state with an expected
// account array.
func checkStateAccounts(t *testing.T, db ethdb.Database, root common.Hash, accounts []*testAccount) {
// Check root availability and state contents
state, err := New(root, NewDatabase(db, trie.NewNodePool()))
state, err := New(root, NewDatabase(trie.NewDatabase(db)))
if err != nil {
t.Fatalf("failed to create state trie at %x: %v", root, err)
}
@ -96,7 +96,7 @@ func checkTrieConsistency(db ethdb.Database, root common.Hash) error {
if v, _ := db.Get(root[:]); v == nil {
return nil // Consider a non existent state consistent.
}
trie, err := trie.New(root, db, trie.NewNodePool())
trie, err := trie.New(root, trie.NewDatabase(db))
if err != nil {
return err
}
@ -112,7 +112,7 @@ func checkStateConsistency(db ethdb.Database, root common.Hash) error {
if _, err := db.Get(root.Bytes()); err != nil {
return nil // Consider a non existent state consistent.
}
state, err := New(root, NewDatabase(db, trie.NewNodePool()))
state, err := New(root, NewDatabase(trie.NewDatabase(db)))
if err != nil {
return err
}
@ -138,7 +138,7 @@ func TestIterativeStateSyncBatched(t *testing.T) { testIterativeStateSync(t,
func testIterativeStateSync(t *testing.T, batch int) {
// Create a random state to copy
srcDb, srcMem, srcRoot, srcAccounts := makeTestState()
srcDb, srcRoot, srcAccounts := makeTestState()
// Create a destination state and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
@ -148,14 +148,9 @@ func testIterativeStateSync(t *testing.T, batch int) {
for len(queue) > 0 {
results := make([]trie.SyncResult, len(queue))
for i, hash := range queue {
var (
data = srcDb.NodePool().Fetch(hash)
err error
)
if data == nil {
if data, err = srcMem.Get(hash.Bytes()); err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
data, err := srcDb.TrieDB().Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
results[i] = trie.SyncResult{Hash: hash, Data: data}
}
@ -175,7 +170,7 @@ func testIterativeStateSync(t *testing.T, batch int) {
// partial results are returned, and the others sent only later.
func TestIterativeDelayedStateSync(t *testing.T) {
// Create a random state to copy
srcDb, srcMem, srcRoot, srcAccounts := makeTestState()
srcDb, srcRoot, srcAccounts := makeTestState()
// Create a destination state and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
@ -186,14 +181,9 @@ func TestIterativeDelayedStateSync(t *testing.T) {
// Sync only half of the scheduled nodes
results := make([]trie.SyncResult, len(queue)/2+1)
for i, hash := range queue[:len(results)] {
var (
data = srcDb.NodePool().Fetch(hash)
err error
)
if data == nil {
if data, err = srcMem.Get(hash.Bytes()); err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
data, err := srcDb.TrieDB().Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
results[i] = trie.SyncResult{Hash: hash, Data: data}
}
@ -217,7 +207,7 @@ func TestIterativeRandomStateSyncBatched(t *testing.T) { testIterativeRandomS
func testIterativeRandomStateSync(t *testing.T, batch int) {
// Create a random state to copy
srcDb, srcMem, srcRoot, srcAccounts := makeTestState()
srcDb, srcRoot, srcAccounts := makeTestState()
// Create a destination state and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
@ -231,14 +221,9 @@ func testIterativeRandomStateSync(t *testing.T, batch int) {
// Fetch all the queued nodes in a random order
results := make([]trie.SyncResult, 0, len(queue))
for hash := range queue {
var (
data = srcDb.NodePool().Fetch(hash)
err error
)
if data == nil {
if data, err = srcMem.Get(hash.Bytes()); err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
data, err := srcDb.TrieDB().Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
results = append(results, trie.SyncResult{Hash: hash, Data: data})
}
@ -262,7 +247,7 @@ func testIterativeRandomStateSync(t *testing.T, batch int) {
// partial results are returned (Even those randomly), others sent only later.
func TestIterativeRandomDelayedStateSync(t *testing.T) {
// Create a random state to copy
srcDb, srcMem, srcRoot, srcAccounts := makeTestState()
srcDb, srcRoot, srcAccounts := makeTestState()
// Create a destination state and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
@ -278,14 +263,9 @@ func TestIterativeRandomDelayedStateSync(t *testing.T) {
for hash := range queue {
delete(queue, hash)
var (
data = srcDb.NodePool().Fetch(hash)
err error
)
if data == nil {
if data, err = srcMem.Get(hash.Bytes()); err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
data, err := srcDb.TrieDB().Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
results = append(results, trie.SyncResult{Hash: hash, Data: data})
@ -312,9 +292,9 @@ func TestIterativeRandomDelayedStateSync(t *testing.T) {
// the database.
func TestIncompleteStateSync(t *testing.T) {
// Create a random state to copy
srcDb, srcMem, srcRoot, srcAccounts := makeTestState()
srcDb, srcRoot, srcAccounts := makeTestState()
checkTrieConsistency(srcMem, srcRoot)
checkTrieConsistency(srcDb.TrieDB().DiskDB().(ethdb.Database), srcRoot)
// Create a destination state and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
@ -326,14 +306,9 @@ func TestIncompleteStateSync(t *testing.T) {
// Fetch a batch of state nodes
results := make([]trie.SyncResult, len(queue))
for i, hash := range queue {
var (
data = srcDb.NodePool().Fetch(hash)
err error
)
if data == nil {
if data, err = srcMem.Get(hash.Bytes()); err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
data, err := srcDb.TrieDB().Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x", hash)
}
results[i] = trie.SyncResult{Hash: hash, Data: data}
}

View file

@ -33,6 +33,7 @@ import (
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
)
// testTxPoolConfig is a transaction pool configuration without stateful disk
@ -78,8 +79,8 @@ func pricedTransaction(nonce uint64, gaslimit uint64, gasprice *big.Int, key *ec
}
func setupTxPool() (*TxPool, *ecdsa.PrivateKey) {
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
diskdb, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(diskdb)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
key, _ := crypto.GenerateKey()
@ -159,7 +160,7 @@ func (c *testChain) State() (*state.StateDB, error) {
stdb := c.statedb
if *c.trigger {
db, _ := ethdb.NewMemDatabase()
c.statedb, _ = state.New(common.Hash{}, state.NewDatabase(db, nil))
c.statedb, _ = state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
// simulate that the new head block included tx0 and tx1
c.statedb.SetNonce(c.address, 2)
c.statedb.SetBalance(c.address, new(big.Int).SetUint64(params.Ether))
@ -178,7 +179,7 @@ func TestStateChangeDuringTransactionPoolReset(t *testing.T) {
db, _ = ethdb.NewMemDatabase()
key, _ = crypto.GenerateKey()
address = crypto.PubkeyToAddress(key.PublicKey)
statedb, _ = state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ = state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
trigger = false
)
@ -338,7 +339,7 @@ func TestTransactionChainFork(t *testing.T) {
addr := crypto.PubkeyToAddress(key.PublicKey)
resetState := func() {
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
statedb.AddBalance(addr, big.NewInt(100000000000000))
pool.chain = &testBlockChain{statedb, 1000000, new(event.Feed)}
@ -368,7 +369,7 @@ func TestTransactionDoubleNonce(t *testing.T) {
addr := crypto.PubkeyToAddress(key.PublicKey)
resetState := func() {
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
statedb.AddBalance(addr, big.NewInt(100000000000000))
pool.chain = &testBlockChain{statedb, 1000000, new(event.Feed)}
@ -737,7 +738,7 @@ func testTransactionQueueGlobalLimiting(t *testing.T, nolocals bool) {
// Create the pool to test the limit enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -826,7 +827,7 @@ func testTransactionQueueTimeLimiting(t *testing.T, nolocals bool) {
// Create the pool to test the non-expiration enforcement
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -981,7 +982,7 @@ func TestTransactionPendingGlobalLimiting(t *testing.T) {
// Create the pool to test the limit enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -1028,7 +1029,7 @@ func TestTransactionCapClearsFromAll(t *testing.T) {
// Create the pool to test the limit enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -1063,7 +1064,7 @@ func TestTransactionPendingMinimumAllowance(t *testing.T) {
// Create the pool to test the limit enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -1112,7 +1113,7 @@ func TestTransactionPoolRepricing(t *testing.T) {
// Create the pool to test the pricing enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
@ -1211,7 +1212,7 @@ func TestTransactionPoolRepricingKeepsLocals(t *testing.T) {
// Create the pool to test the pricing enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
@ -1274,7 +1275,7 @@ func TestTransactionPoolUnderpricing(t *testing.T) {
// Create the pool to test the pricing enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -1376,7 +1377,7 @@ func TestTransactionReplacement(t *testing.T) {
// Create the pool to test the pricing enforcement with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)
@ -1471,7 +1472,7 @@ func testTransactionJournaling(t *testing.T, nolocals bool) {
// Create the original pool to inject transaction into the journal
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
config := testTxPoolConfig
@ -1570,7 +1571,7 @@ func TestTransactionStatusCheck(t *testing.T) {
// Create the pool to test the status retrievals with
db, _ := ethdb.NewMemDatabase()
statedb, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
statedb, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
blockchain := &testBlockChain{statedb, 1000000, new(event.Feed)}
pool := NewTxPool(testTxPoolConfig, params.TestChainConfig, blockchain)

View file

@ -27,6 +27,7 @@ import (
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
)
// Config is a basic type specifying certain configuration flags for running
@ -102,7 +103,7 @@ func Execute(code, input []byte, cfg *Config) ([]byte, *state.StateDB, error) {
if cfg.State == nil {
db, _ := ethdb.NewMemDatabase()
cfg.State, _ = state.New(common.Hash{}, state.NewDatabase(db, nil))
cfg.State, _ = state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
}
var (
address = common.StringToAddress("contract")
@ -133,7 +134,7 @@ func Create(input []byte, cfg *Config) ([]byte, common.Address, uint64, error) {
if cfg.State == nil {
db, _ := ethdb.NewMemDatabase()
cfg.State, _ = state.New(common.Hash{}, state.NewDatabase(db, nil))
cfg.State, _ = state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
}
var (
vmenv = NewEnv(cfg)

View file

@ -26,6 +26,7 @@ import (
"github.com/ethereum/go-ethereum/core/state"
"github.com/ethereum/go-ethereum/core/vm"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/trie"
)
func TestDefaults(t *testing.T) {
@ -95,7 +96,7 @@ func TestExecute(t *testing.T) {
func TestCall(t *testing.T) {
db, _ := ethdb.NewMemDatabase()
state, _ := state.New(common.Hash{}, state.NewDatabase(db, nil))
state, _ := state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
address := common.HexToAddress("0x0a")
state.SetCode(address, []byte{
byte(vm.PUSH1), 10,

View file

@ -462,11 +462,11 @@ func (api *PrivateDebugAPI) getModifiedAccounts(startBlock, endBlock *types.Bloc
return nil, fmt.Errorf("start block height (%d) must be less than end block height (%d)", startBlock.Number().Uint64(), endBlock.Number().Uint64())
}
oldTrie, err := trie.NewSecure(startBlock.Root(), api.eth.chainDb, nil, 0)
oldTrie, err := trie.NewSecure(startBlock.Root(), trie.NewDatabase(api.eth.chainDb), 0)
if err != nil {
return nil, err
}
newTrie, err := trie.NewSecure(endBlock.Root(), api.eth.chainDb, nil, 0)
newTrie, err := trie.NewSecure(endBlock.Root(), trie.NewDatabase(api.eth.chainDb), 0)
if err != nil {
return nil, err
}

View file

@ -24,6 +24,7 @@ import (
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core/state"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/trie"
)
var dumper = spew.ConfigState{Indent: " "}
@ -32,7 +33,7 @@ func TestStorageRangeAt(t *testing.T) {
// Create a state where account 0x010000... has a few storage entries.
var (
db, _ = ethdb.NewMemDatabase()
state, _ = state.New(common.Hash{}, state.NewDatabase(db, nil))
state, _ = state.New(common.Hash{}, state.NewDatabase(trie.NewDatabase(db)))
addr = common.Address{0x01}
keys = []common.Hash{ // hashes of Keys of storage
common.HexToHash("340dd630ad21bf010b4e676dbfa9ba9a02175262d1fa356232cfde6cb5b47ef2"),

View file

@ -200,7 +200,7 @@ func (api *PrivateDebugAPI) traceChain(ctx context.Context, start, end *types.Bl
return nil, fmt.Errorf("parent block #%d not found", number-1)
}
}
statedb, err := state.New(start.Root(), state.NewDatabase(db, nil))
statedb, err := state.New(start.Root(), state.NewDatabase(trie.NewDatabase(db)))
if err != nil {
// If the starting state is missing, allow some number of blocks to be reexecuted
reexec := defaultTraceReexec
@ -213,7 +213,7 @@ func (api *PrivateDebugAPI) traceChain(ctx context.Context, start, end *types.Bl
if start == nil {
break
}
if statedb, err = state.New(start.Root(), state.NewDatabase(db, nil)); err == nil {
if statedb, err = state.New(start.Root(), state.NewDatabase(trie.NewDatabase(db))); err == nil {
break
}
}
@ -340,7 +340,7 @@ func (api *PrivateDebugAPI) traceChain(ctx context.Context, start, end *types.Bl
break
}
// Finalize the state so any modifications are written to the trie
root, err := statedb.CommitTo(db, true)
root, err := statedb.Commit(true)
if err != nil {
failed = err
break
@ -367,7 +367,7 @@ func (api *PrivateDebugAPI) traceChain(ctx context.Context, start, end *types.Bl
db.Prune(root)
log.Info("Pruned tracer state entries", "deleted", nodes-db.memdb.Len(), "left", db.memdb.Len(), "elapsed", time.Since(start))
statedb, _ = state.New(root, state.NewDatabase(db, nil))
statedb, _ = state.New(root, state.NewDatabase(trie.NewDatabase(db)))
}
}
}()
@ -555,7 +555,7 @@ func (api *PrivateDebugAPI) computeStateDB(block *types.Block, reexec uint64) (*
if block == nil {
break
}
if statedb, err = state.New(block.Root(), state.NewDatabase(db, nil)); err == nil {
if statedb, err = state.New(block.Root(), state.NewDatabase(trie.NewDatabase(db))); err == nil {
break
}
}
@ -587,7 +587,7 @@ func (api *PrivateDebugAPI) computeStateDB(block *types.Block, reexec uint64) (*
return nil, err
}
// Finalize the state so any modifications are written to the trie
root, err := statedb.CommitTo(db, true)
root, err := statedb.Commit(true)
if err != nil {
return nil, err
}
@ -603,7 +603,7 @@ func (api *PrivateDebugAPI) computeStateDB(block *types.Block, reexec uint64) (*
db.Prune(root)
log.Info("Pruned tracer state entries", "deleted", nodes-db.memdb.Len(), "left", db.memdb.Len(), "elapsed", time.Since(begin))
statedb, _ = state.New(root, state.NewDatabase(db, nil))
statedb, _ = state.New(root, state.NewDatabase(trie.NewDatabase(db)))
}
}
log.Info("Historical state regenerated", "block", block.NumberU64(), "elapsed", time.Since(start))

View file

@ -293,7 +293,7 @@ func (dl *downloadTester) CurrentFastBlock() *types.Block {
func (dl *downloadTester) FastSyncCommitHead(hash common.Hash) error {
// For now only check that the state trie is correct
if block := dl.GetBlockByHash(hash); block != nil {
_, err := trie.NewSecure(block.Root(), dl.stateDb, nil, 0) // nil trie node-cache, ensure we have everything on disk
_, err := trie.NewSecure(block.Root(), trie.NewDatabase(dl.stateDb), 0)
return err
}
return fmt.Errorf("non existent block: %x", hash[:4])
@ -660,7 +660,7 @@ func assertOwnForkedChain(t *testing.T, tester *downloadTester, common int, leng
index = len(tester.ownHashes) - lengths[len(lengths)-1] + int(tester.downloader.queue.fastSyncPivot)
}
if index > 0 {
if statedb, err := state.New(tester.ownHeaders[tester.ownHashes[index]].Root, state.NewDatabase(tester.stateDb, nil)); statedb == nil || err != nil {
if statedb, err := state.New(tester.ownHeaders[tester.ownHashes[index]].Root, state.NewDatabase(trie.NewDatabase(tester.stateDb))); statedb == nil || err != nil {
t.Fatalf("state reconstruction failed: %v", err)
}
}

View file

@ -35,6 +35,7 @@ import (
"github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/p2p"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
)
// Tests that protocol versions and modes of operations are matched up properly.
@ -372,7 +373,7 @@ func testGetNodeData(t *testing.T, protocol int) {
}
accounts := []common.Address{testBank, acc1Addr, acc2Addr}
for i := uint64(0); i <= pm.blockchain.CurrentBlock().NumberU64(); i++ {
trie, _ := state.New(pm.blockchain.GetBlockByNumber(i).Root(), state.NewDatabase(statedb, nil))
trie, _ := state.New(pm.blockchain.GetBlockByNumber(i).Root(), state.NewDatabase(trie.NewDatabase(statedb)))
for j, acc := range accounts {
state, _ := pm.blockchain.State()

View file

@ -579,7 +579,7 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
for _, req := range req.Reqs {
// Retrieve the requested state entry, stopping if enough was found
if header := core.GetHeader(pm.chainDb, req.BHash, core.GetBlockNumber(pm.chainDb, req.BHash)); header != nil {
if trie, _ := trie.New(header.Root, pm.chainDb, nil); trie != nil {
if trie, _ := trie.New(header.Root, trie.NewDatabase(pm.chainDb)); trie != nil {
sdata := trie.Get(req.AccKey)
var acc state.Account
if err := rlp.DecodeBytes(sdata, &acc); err == nil {
@ -706,13 +706,13 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
}
// Retrieve the requested state entry, stopping if enough was found
if header := core.GetHeader(pm.chainDb, req.BHash, core.GetBlockNumber(pm.chainDb, req.BHash)); header != nil {
if tr, _ := trie.New(header.Root, pm.chainDb, nil); tr != nil {
if tr, _ := trie.New(header.Root, trie.NewDatabase(pm.chainDb)); tr != nil {
if len(req.AccKey) > 0 {
sdata := tr.Get(req.AccKey)
tr = nil
var acc state.Account
if err := rlp.DecodeBytes(sdata, &acc); err == nil {
tr, _ = trie.New(acc.Root, pm.chainDb, nil)
tr, _ = trie.New(acc.Root, trie.NewDatabase(pm.chainDb))
}
}
if tr != nil {
@ -757,7 +757,7 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
}
if tr == nil || req.BHash != lastBHash {
if header := core.GetHeader(pm.chainDb, req.BHash, core.GetBlockNumber(pm.chainDb, req.BHash)); header != nil {
tr, _ = trie.New(header.Root, pm.chainDb, nil)
tr, _ = trie.New(header.Root, trie.NewDatabase(pm.chainDb))
} else {
tr = nil
}
@ -771,7 +771,7 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
str = nil
var acc state.Account
if err := rlp.DecodeBytes(sdata, &acc); err == nil {
str, _ = trie.New(acc.Root, pm.chainDb, nil)
str, _ = trie.New(acc.Root, trie.NewDatabase(pm.chainDb))
}
lastAccKey = common.CopyBytes(req.AccKey)
}
@ -858,7 +858,7 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
if header := pm.blockchain.GetHeaderByNumber(req.BlockNum); header != nil {
sectionHead := core.GetCanonicalHash(pm.chainDb, req.ChtNum*light.ChtV1Frequency-1)
if root := light.GetChtRoot(pm.chainDb, req.ChtNum-1, sectionHead); root != (common.Hash{}) {
if tr, _ := trie.New(root, trieDb, nil); tr != nil {
if tr, _ := trie.New(root, trie.NewDatabase(trieDb)); tr != nil {
var encNumber [8]byte
binary.BigEndian.PutUint64(encNumber[:], req.BlockNum)
var proof light.NodeList
@ -910,7 +910,7 @@ func (pm *ProtocolManager) handleMsg(p *peer) error {
var prefix string
root, prefix = pm.getHelperTrie(req.HelperTrieType, req.TrieIdx)
if root != (common.Hash{}) {
if t, err := trie.New(root, ethdb.NewTable(pm.chainDb, prefix), nil); err == nil {
if t, err := trie.New(root, trie.NewDatabase(ethdb.NewTable(pm.chainDb, prefix))); err == nil {
tr = t
}
}

View file

@ -359,7 +359,7 @@ func testGetProofs(t *testing.T, protocol int) {
for i := uint64(0); i <= bc.CurrentBlock().NumberU64(); i++ {
header := bc.GetHeaderByNumber(i)
root := header.Root
trie, _ := trie.New(root, db, nil)
trie, _ := trie.New(root, trie.NewDatabase(db))
for _, acc := range accounts {
req := ProofReq{

View file

@ -34,6 +34,7 @@ import (
"github.com/ethereum/go-ethereum/light"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/trie"
)
type odrTestFn func(ctx context.Context, db ethdb.Database, config *params.ChainConfig, bc *core.BlockChain, lc *light.LightChain, bhash common.Hash) []byte
@ -90,7 +91,7 @@ func odrAccounts(ctx context.Context, db ethdb.Database, config *params.ChainCon
for _, addr := range acc {
if bc != nil {
header := bc.GetHeaderByHash(bhash)
st, err = state.New(header.Root, state.NewDatabase(db, nil))
st, err = state.New(header.Root, state.NewDatabase(trie.NewDatabase(db)))
} else {
header := lc.GetHeaderByHash(bhash)
st = light.NewState(ctx, header, lc.Odr())
@ -123,7 +124,7 @@ func odrContractCall(ctx context.Context, db ethdb.Database, config *params.Chai
data[35] = byte(i)
if bc != nil {
header := bc.GetHeaderByHash(bhash)
statedb, err := state.New(header.Root, state.NewDatabase(db, nil))
statedb, err := state.New(header.Root, state.NewDatabase(trie.NewDatabase(db)))
if err == nil {
from := statedb.GetOrNewStateObject(testBankAddress)

View file

@ -99,7 +99,7 @@ func (db *NodeSet) NodeList() NodeList {
}
// Store writes the contents of the set to the given database
func (db *NodeSet) Store(target trie.Database) {
func (db *NodeSet) Store(target trie.DatabaseWriter) {
db.lock.RLock()
defer db.lock.RUnlock()
@ -112,7 +112,7 @@ func (db *NodeSet) Store(target trie.Database) {
type NodeList []rlp.RawValue
// Store writes the contents of the list to the given database
func (n NodeList) Store(db trie.Database) {
func (n NodeList) Store(db trie.DatabaseWriter) {
for _, node := range n {
db.Put(crypto.Keccak256(node), node)
}

View file

@ -74,7 +74,7 @@ func (odr *testOdr) Retrieve(ctx context.Context, req OdrRequest) error {
case *ReceiptsRequest:
req.Receipts = core.GetBlockReceipts(odr.sdb, req.Hash, core.GetBlockNumber(odr.sdb, req.Hash))
case *TrieRequest:
t, _ := trie.New(req.Id.Root, odr.sdb, nil)
t, _ := trie.New(req.Id.Root, trie.NewDatabase(odr.sdb))
nodes := NewNodeSet()
t.Prove(req.Key, 0, nodes)
req.Proof = nodes
@ -131,7 +131,7 @@ func odrAccounts(ctx context.Context, db ethdb.Database, bc *core.BlockChain, lc
st = NewState(ctx, header, lc.Odr())
} else {
header := bc.GetHeaderByHash(bhash)
st, _ = state.New(header.Root, state.NewDatabase(db, nil))
st, _ = state.New(header.Root, state.NewDatabase(trie.NewDatabase(db)))
}
var res []byte
@ -171,7 +171,7 @@ func odrContractCall(ctx context.Context, db ethdb.Database, bc *core.BlockChain
} else {
chain = bc
header = bc.GetHeaderByHash(bhash)
st, _ = state.New(header.Root, state.NewDatabase(db, nil))
st, _ = state.New(header.Root, state.NewDatabase(trie.NewDatabase(db)))
}
// Perform read-only call.

View file

@ -141,7 +141,7 @@ func (c *ChtIndexerBackend) Reset(section uint64, lastSectionHead common.Hash) e
root = GetChtRoot(c.db, section-1, lastSectionHead)
}
var err error
c.trie, err = trie.New(root, c.cdb, nil)
c.trie, err = trie.New(root, trie.NewDatabase(c.cdb))
c.section = section
return err
}
@ -163,17 +163,14 @@ func (c *ChtIndexerBackend) Process(header *types.Header) {
// Commit implements core.ChainIndexerBackend
func (c *ChtIndexerBackend) Commit() error {
batch := c.cdb.NewBatch()
root, err := c.trie.CommitTo(batch)
root, err := c.trie.Commit(nil)
if err != nil {
return err
} else {
batch.Write()
if ((c.section+1)*c.sectionSize)%ChtFrequency == 0 {
log.Info("Storing CHT", "idx", c.section*c.sectionSize/ChtFrequency, "sectionHead", fmt.Sprintf("%064x", c.lastHash), "root", fmt.Sprintf("%064x", root))
}
StoreChtRoot(c.db, c.section, c.lastHash, root)
}
if ((c.section+1)*c.sectionSize)%ChtFrequency == 0 {
log.Info("Storing CHT", "idx", c.section*c.sectionSize/ChtFrequency, "sectionHead", fmt.Sprintf("%064x", c.lastHash), "root", fmt.Sprintf("%064x", root))
}
StoreChtRoot(c.db, c.section, c.lastHash, root)
return nil
}
@ -236,7 +233,7 @@ func (b *BloomTrieIndexerBackend) Reset(section uint64, lastSectionHead common.H
root = GetBloomTrieRoot(b.db, section-1, lastSectionHead)
}
var err error
b.trie, err = trie.New(root, b.cdb, nil)
b.trie, err = trie.New(root, trie.NewDatabase(b.cdb))
b.section = section
return err
}
@ -279,17 +276,13 @@ func (b *BloomTrieIndexerBackend) Commit() error {
b.trie.Delete(encKey[:])
}
}
batch := b.cdb.NewBatch()
root, err := b.trie.CommitTo(batch)
root, err := b.trie.Commit(nil)
if err != nil {
return err
} else {
batch.Write()
sectionHead := b.sectionHeads[b.bloomTrieRatio-1]
log.Info("Storing BloomTrie", "section", b.section, "sectionHead", fmt.Sprintf("%064x", sectionHead), "root", fmt.Sprintf("%064x", root), "compression ratio", float64(compSize)/float64(decompSize))
StoreBloomTrieRoot(b.db, b.section, sectionHead, root)
}
sectionHead := b.sectionHeads[b.bloomTrieRatio-1]
log.Info("Storing BloomTrie", "section", b.section, "sectionHead", fmt.Sprintf("%064x", sectionHead), "root", fmt.Sprintf("%064x", root), "compression ratio", float64(compSize)/float64(decompSize))
StoreBloomTrieRoot(b.db, b.section, sectionHead, root)
return nil
}

View file

@ -83,7 +83,7 @@ func (db *odrDatabase) ContractCodeSize(addrHash, codeHash common.Hash) (int, er
return len(code), err
}
func (db *odrDatabase) NodePool() *trie.NodePool {
func (db *odrDatabase) TrieDB() *trie.Database {
return nil
}
@ -117,11 +117,11 @@ func (t *odrTrie) TryDelete(key []byte) error {
})
}
func (t *odrTrie) CommitTo(db trie.DatabaseWriter) (common.Hash, error) {
func (t *odrTrie) Commit(onleaf trie.LeafCallback) (common.Hash, error) {
if t.trie == nil {
return t.id.Root, nil
}
return t.trie.CommitTo(db)
return t.trie.Commit(onleaf)
}
func (t *odrTrie) Hash() common.Hash {
@ -145,7 +145,7 @@ func (t *odrTrie) do(key []byte, fn func() error) error {
for {
var err error
if t.trie == nil {
t.trie, err = trie.New(t.id.Root, t.db.backend.Database(), nil)
t.trie, err = trie.New(t.id.Root, trie.NewDatabase(t.db.backend.Database()))
}
if err == nil {
err = fn()
@ -171,7 +171,7 @@ func newNodeIterator(t *odrTrie, startkey []byte) trie.NodeIterator {
// Open the actual non-ODR trie if that hasn't happened yet.
if t.trie == nil {
it.do(func() error {
t, err := trie.New(t.id.Root, t.db.backend.Database(), nil)
t, err := trie.New(t.id.Root, trie.NewDatabase(t.db.backend.Database()))
if err == nil {
it.t.trie = t
}

View file

@ -50,7 +50,7 @@ func TestNodeIterator(t *testing.T) {
odr := &testOdr{sdb: fulldb, ldb: lightdb}
head := blockchain.CurrentHeader()
lightTrie, _ := NewStateDatabase(ctx, head, odr).OpenTrie(head.Root)
fullTrie, _ := state.NewDatabase(fulldb, nil).OpenTrie(head.Root)
fullTrie, _ := state.NewDatabase(trie.NewDatabase(fulldb)).OpenTrie(head.Root)
if err := diffTries(fullTrie, lightTrie); err != nil {
t.Fatal(err)
}

View file

@ -35,6 +35,7 @@ import (
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/trie"
)
// StateTest checks transaction processing without block context.
@ -125,7 +126,7 @@ func (t *StateTest) Run(subtest StateSubtest, vmconfig vm.Config) (*state.StateD
if !ok {
return nil, UnsupportedForkError{subtest.Fork}
}
block, _ := t.genesis(config).ToBlock()
block, _, _ := t.genesis(config).ToBlock()
db, _ := ethdb.NewMemDatabase()
statedb := MakePreState(db, t.json.Pre)
@ -147,7 +148,7 @@ func (t *StateTest) Run(subtest StateSubtest, vmconfig vm.Config) (*state.StateD
if logs := rlpHash(statedb.Logs()); logs != common.Hash(post.Logs) {
return statedb, fmt.Errorf("post state logs hash mismatch: got %x, want %x", logs, post.Logs)
}
root, _ := statedb.CommitTo(db, config.IsEIP158(block.Number()))
root, _ := statedb.Commit(config.IsEIP158(block.Number()))
if root != common.Hash(post.Root) {
return statedb, fmt.Errorf("post state root mismatch: got %x, want %x", root, post.Root)
}
@ -159,7 +160,7 @@ func (t *StateTest) gasLimit(subtest StateSubtest) uint64 {
}
func MakePreState(db ethdb.Database, accounts core.GenesisAlloc) *state.StateDB {
sdb := state.NewDatabase(db, nil)
sdb := state.NewDatabase(trie.NewDatabase(db))
statedb, _ := state.New(common.Hash{}, sdb)
for addr, a := range accounts {
statedb.SetCode(addr, a.Code)
@ -170,7 +171,7 @@ func MakePreState(db ethdb.Database, accounts core.GenesisAlloc) *state.StateDB
}
}
// Commit and re-open to start with a clean state.
root, _ := statedb.CommitTo(db, false)
root, _ := statedb.Commit(false)
statedb, _ = state.New(root, sdb)
return statedb
}

304
trie/database.go Normal file
View file

@ -0,0 +1,304 @@
// Copyright 2017 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 trie
import (
"sync"
"time"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/log"
)
// secureKeyPrefix is the database key prefix used to store trie node preimages.
var secureKeyPrefix = []byte("secure-key-")
// secureKeyLength is the length of the above prefix + 32byte hash.
const secureKeyLength = 11 + 32
// DatabaseReader wraps the Get and Has method of a backing store for the trie.
type DatabaseReader interface {
// Get retrieves the value associated with key form the database.
Get(key []byte) (value []byte, err error)
// Has retrieves whether a key is present in the database.
Has(key []byte) (bool, error)
}
// DatabaseWriter wraps the Put method of a backing store for the trie.
type DatabaseWriter interface {
// Put stores the mapping key->value in the database. Implementations must not
// hold onto the value as the trie will reuse the slice across calls to Put.
Put(key, value []byte) error
}
// Database is an intermediate write layer between the trie data structures and
// the disk database. The aim is to accumulate trie writes in-memory and only
// periodically flush a couple tries to disk, garbage collecting the remainder.
type Database struct {
diskdb DatabaseReader // Persistent storage for matured trie nodes
nodes map[common.Hash][]byte // Cached data blocks of the trie nodes
parents map[common.Hash]int // Number of live nodes referencing a given one
children map[common.Hash]map[common.Hash]struct{} // Set of children referenced by given nodes
preimages map[common.Hash][]byte // Preimages of nodes from the secure trie
seckeybuf [secureKeyLength]byte // Ephemeral buffer for calculating preimage keys
gctime time.Duration // Time spent on garbage collection since last commit
gcnodes uint64 // Nodes garbage collected since last commit
gcsize common.StorageSize // Data storage garbage collected since last commit
size common.StorageSize // Storage size of the memory cache
lock sync.RWMutex
}
// NewDatabase creates a new trie database to store ephemeral trie content before
// its written out to disk or garbage collected.
func NewDatabase(diskdb DatabaseReader) *Database {
db := &Database{
diskdb: diskdb,
nodes: make(map[common.Hash][]byte),
parents: make(map[common.Hash]int),
children: make(map[common.Hash]map[common.Hash]struct{}),
preimages: make(map[common.Hash][]byte),
}
db.children[common.Hash{}] = make(map[common.Hash]struct{})
return db
}
// DiskDB retrieves the persistent storage backing the trie database.
func (db *Database) DiskDB() DatabaseReader {
return db.diskdb
}
// Insert writes a new trie node to the memory database if it's yet unknown. The
// method will make a copy of the slice.
func (db *Database) Insert(hash common.Hash, blob []byte) {
db.lock.Lock()
defer db.lock.Unlock()
db.insert(hash, blob)
}
// insert is the private locked version of Insert.
func (db *Database) insert(hash common.Hash, blob []byte) {
if _, ok := db.nodes[hash]; ok {
return
}
db.nodes[hash] = common.CopyBytes(blob)
db.children[hash] = make(map[common.Hash]struct{})
db.size += common.StorageSize(common.HashLength + len(blob))
}
// insertPreimage writes a new trie node pre-image to the memory database if it's
// yet unknown. The method will make a copy of the slice.
//
// Note, this method assumes that the database's lock is held!
func (db *Database) insertPreimage(hash common.Hash, preimage []byte) {
if _, ok := db.preimages[hash]; ok {
return
}
db.preimages[hash] = common.CopyBytes(preimage)
db.size += common.StorageSize(common.HashLength + len(preimage))
}
// Node retrieves a cached trie node from memory. If it cannot be found cached,
// the method queries the persistent database for the content.
func (db *Database) Node(hash common.Hash) ([]byte, error) {
// Retrieve the node from cache if available
db.lock.RLock()
blob := db.nodes[hash]
db.lock.RUnlock()
if blob != nil {
return blob, nil
}
// Content unavailable in memory, attempt to retrieve from disk
return db.diskdb.Get(hash[:])
}
// preimage retrieves a cached trie node pre-image from memory. If it cannot be
// found cached, the method queries the persistent database for the content.
func (db *Database) preimage(hash common.Hash) ([]byte, error) {
// Retrieve the node from cache if available
db.lock.RLock()
preimage := db.preimages[hash]
db.lock.RUnlock()
if preimage != nil {
return preimage, nil
}
// Content unavailable in memory, attempt to retrieve from disk
return db.diskdb.Get(db.secureKey(hash[:]))
}
// secureKey returns the database key for the preimage of key, as an ephemeral
// buffer. The caller must not hold onto the return value because it will become
// invalid on the next call.
func (db *Database) secureKey(key []byte) []byte {
buf := append(db.seckeybuf[:0], secureKeyPrefix...)
buf = append(buf, key...)
return buf
}
// Nodes retrieves the hashes of all the nodes cached within the memory database.
// This method is extremely expensive and should only be used to validate internal
// states in test code.
func (db *Database) Nodes() []common.Hash {
db.lock.RLock()
defer db.lock.RUnlock()
var hashes = make([]common.Hash, 0, len(db.nodes))
for hash := range db.nodes {
hashes = append(hashes, hash)
}
return hashes
}
// Preimages retrieves the hashes of all the node pre-images cached within the
// memory database. This method is extremely expensive and should only be used
// to validate internal states in test code.
func (db *Database) Preimages() []common.Hash {
db.lock.RLock()
defer db.lock.RUnlock()
var hashes = make([]common.Hash, 0, len(db.nodes))
for hash := range db.preimages {
hashes = append(hashes, hash)
}
return hashes
}
// Reference adds a new reference from a parent node to a child node.
func (db *Database) Reference(child common.Hash, parent common.Hash) {
db.lock.RLock()
defer db.lock.RUnlock()
db.reference(child, parent)
}
// reference is the private locked version of Reference.
func (db *Database) reference(child common.Hash, parent common.Hash) {
// If the node does not exist, it's a node pulled from disk, skip
if _, ok := db.nodes[child]; !ok {
return
}
db.parents[child]++
db.children[parent][child] = struct{}{}
}
// Dereference removes an existing reference from a parent node to a child node.
func (db *Database) Dereference(child common.Hash, parent common.Hash) {
db.lock.Lock()
defer db.lock.Unlock()
nodes, storage, start := len(db.nodes), db.size, time.Now()
db.dereference(child, parent)
db.gcnodes += uint64(nodes - len(db.nodes))
db.gcsize += storage - db.size
db.gctime += time.Since(start)
}
// dereference is the private locked version of Dereference.
func (db *Database) dereference(child common.Hash, parent common.Hash) {
// If the node does not exist, it's a previously comitted node.
blob, ok := db.nodes[child]
if !ok {
return
}
delete(db.children[parent], child)
db.parents[child]--
// If there are no more references to the child, delete it and cascade
if db.parents[child] == 0 {
for child := range db.children[child] {
db.dereference(child, child)
}
delete(db.nodes, child)
delete(db.parents, child)
delete(db.children, child)
db.size -= common.StorageSize(common.HashLength + len(blob))
}
}
// Commit iterates over all the children of a particular node, writes them out
// to disk, forcefully tearing down all references in both directions.
//
// As a side effect, all pre-images accumulated up to this point are also written.
func (db *Database) Commit(node common.Hash, writer DatabaseWriter) error {
db.lock.Lock()
defer db.lock.Unlock()
// Write out all the accumulated trie node preimages
for hash, preimage := range db.preimages {
if err := writer.Put(db.secureKey(hash[:]), preimage); err != nil {
log.Error("Failed to commit preimage from mempool", "err", err)
return err
}
db.size -= common.StorageSize(common.HashLength + len(preimage))
}
db.preimages = make(map[common.Hash][]byte)
// Write out the trie itself and dereference any flushed content
nodes, storage, start := len(db.nodes), db.size, time.Now()
if err := db.commit(node, writer); err != nil {
log.Error("Failed to commit trie from mempool", "err", err)
return err
}
log.Debug("Persistend trie from memory database", "nodes", nodes-len(db.nodes), "size", storage-db.size, "time", time.Since(start),
"gcnodes", db.gcnodes, "gcsize", db.gcsize, "gctime", db.gctime, "livenodes", len(db.nodes), "livesize", db.size)
// Reset the garbage collection statistics
db.gcnodes, db.gcsize, db.gctime = 0, 0, 0
return nil
}
// commit is the private locked version of Commit.
func (db *Database) commit(node common.Hash, writer DatabaseWriter) error {
// If the node does not exist, it's a previously comitted node.
blob, ok := db.nodes[node]
if !ok {
return nil
}
for child := range db.children[node] {
if err := db.commit(child, writer); err != nil {
return err
}
}
if err := writer.Put(node[:], blob); err != nil {
return err
}
delete(db.nodes, node)
delete(db.parents, node)
delete(db.children, node)
db.size -= common.StorageSize(common.HashLength + len(blob))
return nil
}
// Size returns the current storage size of the memory cache in front of the
// persistent database layer.
func (db *Database) Size() common.StorageSize {
db.lock.RLock()
defer db.lock.RUnlock()
return db.size
}

View file

@ -19,7 +19,6 @@ package trie
import (
"bytes"
"hash"
"math/big"
"sync"
"github.com/ethereum/go-ethereum/common"
@ -28,21 +27,23 @@ import (
)
type hasher struct {
tmp *bytes.Buffer
sha hash.Hash
cachegen, cachelimit uint16
tmp *bytes.Buffer
sha hash.Hash
cachegen uint16
cachelimit uint16
onleaf LeafCallback
}
// hashers live in a global pool.
// hashers live in a global db.
var hasherPool = sync.Pool{
New: func() interface{} {
return &hasher{tmp: new(bytes.Buffer), sha: sha3.NewKeccak256()}
},
}
func newHasher(cachegen, cachelimit uint16) *hasher {
func newHasher(cachegen, cachelimit uint16, onleaf LeafCallback) *hasher {
h := hasherPool.Get().(*hasher)
h.cachegen, h.cachelimit = cachegen, cachelimit
h.cachegen, h.cachelimit, h.onleaf = cachegen, cachelimit, onleaf
return h
}
@ -52,10 +53,10 @@ func returnHasherToPool(h *hasher) {
// hash collapses a node down into a hash node, also returning a copy of the
// original node initialized with the computed hash to replace the original one.
func (h *hasher) hash(n node, pool *NodePool, force bool) (node, node, error) {
func (h *hasher) hash(n node, db *Database, force bool) (node, node, error) {
// If we're not storing the node, just hashing, use available cached data
if hash, dirty := n.cache(); hash != nil {
if pool == nil {
if db == nil {
return hash, n, nil
}
if n.canUnload(h.cachegen, h.cachelimit) {
@ -69,11 +70,11 @@ func (h *hasher) hash(n node, pool *NodePool, force bool) (node, node, error) {
}
}
// Trie not processed yet or needs storage, walk the children
collapsed, cached, refs, err := h.hashChildren(n, pool)
collapsed, cached, err := h.hashChildren(n, db)
if err != nil {
return hashNode{}, n, err
}
hashed, refs, err := h.store(collapsed, refs, pool, force)
hashed, err := h.store(collapsed, db, force)
if err != nil {
return hashNode{}, n, err
}
@ -84,12 +85,12 @@ func (h *hasher) hash(n node, pool *NodePool, force bool) (node, node, error) {
switch cn := cached.(type) {
case *shortNode:
cn.flags.hash = cachedHash
if pool != nil {
if db != nil {
cn.flags.dirty = false
}
case *fullNode:
cn.flags.hash = cachedHash
if pool != nil {
if db != nil {
cn.flags.dirty = false
}
}
@ -99,7 +100,7 @@ func (h *hasher) hash(n node, pool *NodePool, force bool) (node, node, error) {
// hashChildren replaces the children of a node with their hashes if the encoded
// size of the child is larger than a hash, returning the collapsed node as well
// as a replacement for the original node with the child hashes cached in.
func (h *hasher) hashChildren(original node, pool *NodePool) (node, node, []common.Hash, error) {
func (h *hasher) hashChildren(original node, db *Database) (node, node, error) {
var err error
switch n := original.(type) {
@ -110,15 +111,15 @@ func (h *hasher) hashChildren(original node, pool *NodePool) (node, node, []comm
cached.Key = common.CopyBytes(n.Key)
if _, ok := n.Val.(valueNode); !ok {
collapsed.Val, cached.Val, err = h.hash(n.Val, pool, false)
collapsed.Val, cached.Val, err = h.hash(n.Val, db, false)
if err != nil {
return original, original, nil, err
return original, original, err
}
}
if collapsed.Val == nil {
collapsed.Val = valueNode(nil) // Ensure that nil children are encoded as empty strings.
}
return collapsed, cached, h.externals(collapsed.Val), nil
return collapsed, cached, nil
case *fullNode:
// Hash the full node's children, caching the newly hashed subtrees
@ -126,9 +127,9 @@ func (h *hasher) hashChildren(original node, pool *NodePool) (node, node, []comm
for i := 0; i < 16; i++ {
if n.Children[i] != nil {
collapsed.Children[i], cached.Children[i], err = h.hash(n.Children[i], pool, false)
collapsed.Children[i], cached.Children[i], err = h.hash(n.Children[i], db, false)
if err != nil {
return original, original, nil, err
return original, original, err
}
} else {
collapsed.Children[i] = valueNode(nil) // Ensure that nil children are encoded as empty strings.
@ -138,65 +139,29 @@ func (h *hasher) hashChildren(original node, pool *NodePool) (node, node, []comm
if collapsed.Children[16] == nil {
collapsed.Children[16] = valueNode(nil)
}
var refs []common.Hash
for i := 0; i < 16; i++ {
refs = append(refs, h.externals(collapsed.Children[i])...)
}
return collapsed, cached, refs, nil
return collapsed, cached, nil
default:
// Value and hash nodes don't have children so they're left as were
return n, original, h.externals(n), nil
return n, original, nil
}
}
// externals returns any external nodes referenced by a particular node. The only
// current case for it is when an account trie references its storage trie.
func (h *hasher) externals(n node) []common.Hash {
// Only value nodes can reference external nodes
val, ok := n.(valueNode)
if !ok {
return nil
}
// Account nodes have very specific sizes, discard anything else
// TODO(karalabe): Seriously? Dafuq man?!
if size := len(val); size < 70 || size > 102 {
return nil
}
// Only account nodes can reference external storage tries
var account struct {
Nonce uint64
Balance *big.Int
Root common.Hash
CodeHash []byte
}
if err := rlp.DecodeBytes(val, &account); err != nil {
//fmt.Printf(".")
return nil
}
// Empty tries are not referenced
if account.Root == emptyState {
return nil
}
return []common.Hash{account.Root}
}
// store hashes the node n and if we have a storage layer specified, it writes
// the key/value pair to it and tracks any node->child references as well as any
// node->external trie references.
func (h *hasher) store(n node, refs []common.Hash, pool *NodePool, force bool) (node, []common.Hash, error) {
func (h *hasher) store(n node, db *Database, force bool) (node, error) {
// Don't store hashes or empty nodes.
if _, isHash := n.(hashNode); n == nil || isHash {
return n, refs, nil
return n, nil
}
// Generate the RLP encoding of the node
h.tmp.Reset()
if err := rlp.Encode(h.tmp, n); err != nil {
panic("encode error: " + err.Error())
}
if h.tmp.Len() < 32 && !force {
return n, refs, nil // Nodes smaller than 32 bytes are stored inside their parent
return n, nil // Nodes smaller than 32 bytes are stored inside their parent
}
// Larger nodes are replaced by their hash and stored in the database.
hash, _ := n.cache()
@ -205,31 +170,43 @@ func (h *hasher) store(n node, refs []common.Hash, pool *NodePool, force bool) (
h.sha.Write(h.tmp.Bytes())
hash = hashNode(h.sha.Sum(nil))
}
if pool != nil {
if db != nil {
// We are pooling the trie nodes into an intermediate memory cache
pool.lock.Lock()
defer pool.lock.Unlock()
db.lock.Lock()
hash := common.BytesToHash(hash)
pool.insert(hash, h.tmp.Bytes())
db.insert(hash, h.tmp.Bytes())
// Track all direct parent->child node references
switch n := n.(type) {
case *shortNode:
if child, ok := n.Val.(hashNode); ok {
pool.reference(common.BytesToHash(child), hash)
db.reference(common.BytesToHash(child), hash)
}
case *fullNode:
for i := 0; i < 16; i++ {
if child, ok := n.Children[i].(hashNode); ok {
pool.reference(common.BytesToHash(child), hash)
db.reference(common.BytesToHash(child), hash)
}
}
}
db.lock.Unlock()
// Track external references from account->storage trie
for _, ext := range refs {
pool.reference(ext, hash)
if h.onleaf != nil {
switch n := n.(type) {
case *shortNode:
if child, ok := n.Val.(valueNode); ok {
h.onleaf(child, hash)
}
case *fullNode:
for i := 0; i < 16; i++ {
if child, ok := n.Children[i].(valueNode); ok {
h.onleaf(child, hash)
}
}
}
}
}
return hash, nil, nil
return hash, nil
}

View file

@ -42,7 +42,7 @@ func TestIterator(t *testing.T) {
all[val.k] = val.v
trie.Update([]byte(val.k), []byte(val.v))
}
trie.Commit()
trie.Commit(nil)
found := make(map[string]string)
it := NewIterator(trie.NodeIterator(nil))
@ -109,11 +109,16 @@ func TestNodeIteratorCoverage(t *testing.T) {
}
// Cross check the hashes and the database itself
for hash := range hashes {
if _, err := db.Get(hash.Bytes()); err != nil {
if _, err := db.Node(hash); err != nil {
t.Errorf("failed to retrieve reported node %x: %v", hash, err)
}
}
for _, key := range db.(*ethdb.MemDatabase).Keys() {
for _, hash := range db.Nodes() {
if _, ok := hashes[hash]; !ok {
t.Errorf("state entry not reported %x", hash)
}
}
for _, key := range db.diskdb.(*ethdb.MemDatabase).Keys() {
if _, ok := hashes[common.BytesToHash(key)]; !ok {
t.Errorf("state entry not reported %x", key)
}
@ -191,13 +196,13 @@ func TestDifferenceIterator(t *testing.T) {
for _, val := range testdata1 {
triea.Update([]byte(val.k), []byte(val.v))
}
triea.Commit()
triea.Commit(nil)
trieb := newEmpty()
for _, val := range testdata2 {
trieb.Update([]byte(val.k), []byte(val.v))
}
trieb.Commit()
trieb.Commit(nil)
found := make(map[string]string)
di, _ := NewDifferenceIterator(triea.NodeIterator(nil), trieb.NodeIterator(nil))
@ -227,13 +232,13 @@ func TestUnionIterator(t *testing.T) {
for _, val := range testdata1 {
triea.Update([]byte(val.k), []byte(val.v))
}
triea.Commit()
triea.Commit(nil)
trieb := newEmpty()
for _, val := range testdata2 {
trieb.Update([]byte(val.k), []byte(val.v))
}
trieb.Commit()
trieb.Commit(nil)
di, _ := NewUnionIterator([]NodeIterator{triea.NodeIterator(nil), trieb.NodeIterator(nil)})
it := NewIterator(di)
@ -278,35 +283,35 @@ func TestIteratorNoDups(t *testing.T) {
}
// This test checks that nodeIterator.Next can be retried after inserting missing trie nodes.
func TestIteratorContinueAfterErrorDirect(t *testing.T) { testIteratorContinueAfterError(t, false) }
func TestIteratorContinueAfterErrorPooled(t *testing.T) { testIteratorContinueAfterError(t, true) }
func TestIteratorContinueAfterErrorDisk(t *testing.T) { testIteratorContinueAfterError(t, false) }
func TestIteratorContinueAfterErrorMemonly(t *testing.T) { testIteratorContinueAfterError(t, true) }
func testIteratorContinueAfterError(t *testing.T, pooled bool) {
var pool *NodePool
if pooled {
pool = NewNodePool()
}
db, _ := ethdb.NewMemDatabase()
func testIteratorContinueAfterError(t *testing.T, memonly bool) {
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
tr, _ := New(common.Hash{}, db, pool)
tr, _ := New(common.Hash{}, triedb)
for _, val := range testdata1 {
tr.Update([]byte(val.k), []byte(val.v))
}
tr.Commit()
tr.Commit(nil)
if !memonly {
triedb.Commit(tr.Hash(), diskdb)
}
wantNodeCount := checkIteratorNoDups(t, tr.NodeIterator(nil), nil)
var (
dbKeys [][]byte
poolKeys []common.Hash
diskKeys [][]byte
memKeys []common.Hash
)
if pooled {
poolKeys = pool.Nodes()
if memonly {
memKeys = triedb.Nodes()
} else {
dbKeys = db.Keys()
diskKeys = diskdb.Keys()
}
for i := 0; i < 20; i++ {
// Create trie that will load all nodes from DB.
tr, _ := New(tr.Hash(), db, pool)
tr, _ := New(tr.Hash(), triedb)
// Remove a random node from the database. It can't be the root node
// because that one is already loaded.
@ -315,21 +320,21 @@ func testIteratorContinueAfterError(t *testing.T, pooled bool) {
rval []byte
)
for {
if pooled {
rkey = poolKeys[rand.Intn(len(poolKeys))]
if memonly {
rkey = memKeys[rand.Intn(len(memKeys))]
} else {
copy(rkey[:], dbKeys[rand.Intn(len(dbKeys))])
copy(rkey[:], diskKeys[rand.Intn(len(diskKeys))])
}
if rkey != tr.Hash() {
break
}
}
if pooled {
rval, _ = pool.cache[rkey]
delete(pool.cache, rkey)
if memonly {
rval, _ = triedb.nodes[rkey]
delete(triedb.nodes, rkey)
} else {
rval, _ = db.Get(rkey[:])
db.Delete(rkey[:])
rval, _ = diskdb.Get(rkey[:])
diskdb.Delete(rkey[:])
}
// Iterate until the error is hit.
seen := make(map[string]bool)
@ -341,10 +346,10 @@ func testIteratorContinueAfterError(t *testing.T, pooled bool) {
}
// Add the node back and continue iteration.
if pooled {
pool.cache[rkey] = rval
if memonly {
triedb.nodes[rkey] = rval
} else {
db.Put(rkey[:], rval)
diskdb.Put(rkey[:], rval)
}
checkIteratorNoDups(t, it, seen)
if it.Error() != nil {
@ -359,40 +364,39 @@ func testIteratorContinueAfterError(t *testing.T, pooled bool) {
// Similar to the test above, this one checks that failure to create nodeIterator at a
// certain key prefix behaves correctly when Next is called. The expectation is that Next
// should retry seeking before returning true for the first time.
func TestIteratorContinueAfterSeekErrorDirect(t *testing.T) {
func TestIteratorContinueAfterSeekErrorDisk(t *testing.T) {
testIteratorContinueAfterSeekError(t, false)
}
func TestIteratorContinueAfterSeekErrorPooled(t *testing.T) {
func TestIteratorContinueAfterSeekErrorMemonly(t *testing.T) {
testIteratorContinueAfterSeekError(t, true)
}
func testIteratorContinueAfterSeekError(t *testing.T, pooled bool) {
func testIteratorContinueAfterSeekError(t *testing.T, memonly bool) {
// Commit test trie to db, then remove the node containing "bars".
var pool *NodePool
if pooled {
pool = NewNodePool()
}
db, _ := ethdb.NewMemDatabase()
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
ctr, _ := New(common.Hash{}, db, pool)
ctr, _ := New(common.Hash{}, triedb)
for _, val := range testdata1 {
ctr.Update([]byte(val.k), []byte(val.v))
}
root, _ := ctr.Commit()
root, _ := ctr.Commit(nil)
if !memonly {
triedb.Commit(root, diskdb)
}
barNodeHash := common.HexToHash("05041990364eb72fcb1127652ce40d8bab765f2bfe53225b1170d276cc101c2e")
var barNodeBlob []byte
if pooled {
barNodeBlob = pool.cache[barNodeHash]
delete(pool.cache, barNodeHash)
if memonly {
barNodeBlob = triedb.nodes[barNodeHash]
delete(triedb.nodes, barNodeHash)
} else {
barNodeBlob, _ = db.Get(barNodeHash[:])
db.Delete(barNodeHash[:])
barNodeBlob, _ = diskdb.Get(barNodeHash[:])
diskdb.Delete(barNodeHash[:])
}
// Create a new iterator that seeks to "bars". Seeking can't proceed because
// the node is missing.
tr, _ := New(root, db, pool)
tr, _ := New(root, triedb)
it := tr.NodeIterator([]byte("bars"))
missing, ok := it.Error().(*MissingNodeError)
if !ok {
@ -401,10 +405,10 @@ func testIteratorContinueAfterSeekError(t *testing.T, pooled bool) {
t.Fatal("wrong node missing")
}
// Reinsert the missing node.
if pooled {
pool.cache[barNodeHash] = barNodeBlob
if memonly {
triedb.nodes[barNodeHash] = barNodeBlob
} else {
db.Put(barNodeHash[:], barNodeBlob)
diskdb.Put(barNodeHash[:], barNodeBlob)
}
// Check that iteration produces the right set of values.
if err := checkIteratorOrder(testdata1[2:], NewIterator(it)); err != nil {

View file

@ -1,195 +0,0 @@
// Copyright 2017 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 trie
import (
"sync"
"time"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/log"
)
// NodePool is an intermediate write layer between the trie data structures and
// the disk database. The aim is to accumulate trie writes in-memory and only
// periodically flush a couple tries to disk, garbage collecting the remainder.
type NodePool struct {
cache map[common.Hash][]byte // Cached data blocks of the trie nodes
parents map[common.Hash]int // Number of live nodes referencing a given one
children map[common.Hash]map[common.Hash]struct{} // Set of children referenced by given nodes
gctime time.Duration // Time spent on garbage collection since last commit
gcnodes uint64 // Nodes garbage collected since last commit
gcsize common.StorageSize // Data storage garbage collected since last commit
size common.StorageSize // Storage size of the memory pool
lock sync.RWMutex
}
// NewNodePool creates a new memory pool to store ephemeral trie nodes before they
// are written out to disk or garbage collected.
func NewNodePool() *NodePool {
pool := &NodePool{
cache: make(map[common.Hash][]byte),
parents: make(map[common.Hash]int),
children: make(map[common.Hash]map[common.Hash]struct{}),
}
pool.children[common.Hash{}] = make(map[common.Hash]struct{})
return pool
}
// insert writes a new trie node to the memory pool if it's yet unknown. The pool
// will make a copy of the slice.
//
// Note, this method assumes that the pool's lock is held!
func (pool *NodePool) insert(hash common.Hash, blob []byte) {
if _, ok := pool.cache[hash]; ok {
return
}
pool.cache[hash] = common.CopyBytes(blob)
pool.children[hash] = make(map[common.Hash]struct{})
pool.size += common.StorageSize(common.HashLength + len(blob))
}
// Fetch retrieves a cached trie node from memory, or returns nil if the pool
// does not have this particular piece of data.
func (pool *NodePool) Fetch(hash common.Hash) []byte {
pool.lock.RLock()
defer pool.lock.RUnlock()
return pool.cache[hash]
}
// Nodes retrieves the hashes of all the nodes cached within the node pool. This
// method is extremely expensive and should only be used in test code to validate
// internal states.
func (pool *NodePool) Nodes() []common.Hash {
pool.lock.RLock()
defer pool.lock.RUnlock()
var hashes = make([]common.Hash, 0, len(pool.cache))
for hash := range pool.cache {
hashes = append(hashes, hash)
}
return hashes
}
// Reference adds a new reference from parent to node.
func (pool *NodePool) Reference(node common.Hash, parent common.Hash) {
pool.lock.RLock()
defer pool.lock.RUnlock()
pool.reference(node, parent)
}
// reference is the private locked version of Reference.
func (pool *NodePool) reference(node common.Hash, parent common.Hash) {
// If the node does not exist, it's a node pulled from disk, skip
if _, ok := pool.cache[node]; !ok {
return
}
pool.parents[node]++
pool.children[parent][node] = struct{}{}
}
// Dereference removes an existing reference from parent to node.
func (pool *NodePool) Dereference(node common.Hash, parent common.Hash) {
pool.lock.Lock()
defer pool.lock.Unlock()
nodes, storage, start := len(pool.cache), pool.size, time.Now()
pool.dereference(node, parent)
pool.gcnodes += uint64(nodes - len(pool.cache))
pool.gcsize += storage - pool.size
pool.gctime += time.Since(start)
}
// dereference is the private locked version of Dereference.
func (pool *NodePool) dereference(node common.Hash, parent common.Hash) {
// If the node does not exist, it's a previously comitted node.
blob, ok := pool.cache[node]
if !ok {
return
}
delete(pool.children[parent], node)
pool.parents[node]--
// If there are no more references to the child, delete it and cascade
if pool.parents[node] == 0 {
for child := range pool.children[node] {
pool.dereference(child, node)
}
delete(pool.cache, node)
delete(pool.parents, node)
delete(pool.children, node)
pool.size -= common.StorageSize(common.HashLength + len(blob))
}
}
// Commit iterates over all the children of a particular node, writes them out
// to disk, forcefully tearing down all references in both directions.
func (pool *NodePool) Commit(node common.Hash, db DatabaseWriter) error {
pool.lock.Lock()
defer pool.lock.Unlock()
nodes, storage, start := len(pool.cache), pool.size, time.Now()
if err := pool.commit(node, db); err != nil {
log.Error("Failed to commit trie from mempool", "err", err)
return err
}
log.Debug("Committed trie from memory pool", "nodes", nodes-len(pool.cache), "size", storage-pool.size, "time", time.Since(start),
"gcnodes", pool.gcnodes, "gcsize", pool.gcsize, "gctime", pool.gctime, "livenodes", len(pool.cache), "livesize", pool.size)
// Reset the garbage collection statistics
pool.gcnodes, pool.gcsize, pool.gctime = 0, 0, 0
// Sanity check that we don't have dangling nodes in the pool (missing refs)
for hash, refs := range pool.parents {
if refs == 0 {
log.Warn("dangling node in mempool", "hash", hash)
break
}
}
return nil
}
// commit is the private locked version of Commit.
func (pool *NodePool) commit(node common.Hash, db DatabaseWriter) error {
// If the node does not exist, it's a previously comitted node.
blob, ok := pool.cache[node]
if !ok {
return nil
}
for child := range pool.children[node] {
if err := pool.commit(child, db); err != nil {
return err
}
}
if err := db.Put(node[:], blob); err != nil {
return err
}
delete(pool.cache, node)
delete(pool.parents, node)
delete(pool.children, node)
pool.size -= common.StorageSize(common.HashLength + len(blob))
return nil
}

View file

@ -26,15 +26,13 @@ import (
"github.com/ethereum/go-ethereum/rlp"
)
// Prove constructs a merkle proof for key. The result contains all
// encoded nodes on the path to the value at key. The value itself is
// also included in the last node and can be retrieved by verifying
// the proof.
// Prove constructs a merkle proof for key. The result contains all encoded nodes
// on the path to the value at key. The value itself is also included in the last
// node and can be retrieved by verifying the proof.
//
// If the trie does not contain a value for key, the returned proof
// contains all nodes of the longest existing prefix of the key
// (at least the root node), ending with the node that proves the
// absence of the key.
// If the trie does not contain a value for key, the returned proof contains all
// nodes of the longest existing prefix of the key (at least the root node), ending
// with the node that proves the absence of the key.
func (t *Trie) Prove(key []byte, fromLevel uint, proofDb DatabaseWriter) error {
// Collect all nodes on the path to key.
key = keybytesToHex(key)
@ -66,12 +64,12 @@ func (t *Trie) Prove(key []byte, fromLevel uint, proofDb DatabaseWriter) error {
panic(fmt.Sprintf("%T: invalid node: %v", tn, tn))
}
}
hasher := newHasher(0, 0)
hasher := newHasher(0, 0, nil)
for i, n := range nodes {
// Don't bother checking for errors here since hasher panics
// if encoding doesn't work and we're not writing to any database.
n, _, _, _ = hasher.hashChildren(n, nil)
hn, _, _ := hasher.store(n, nil, nil, false)
n, _, _ = hasher.hashChildren(n, nil)
hn, _ := hasher.store(n, nil, false)
if hash, ok := hn.(hashNode); ok || i == 0 {
// If the node's database encoding is a hash (or is the
// root node), it becomes a proof element.
@ -89,19 +87,18 @@ func (t *Trie) Prove(key []byte, fromLevel uint, proofDb DatabaseWriter) error {
return nil
}
// VerifyProof checks merkle proofs. The given proof must contain the
// value for key in a trie with the given root hash. VerifyProof
// returns an error if the proof contains invalid trie nodes or the
// wrong value.
// VerifyProof checks merkle proofs. The given proof must contain the value for
// key in a trie with the given root hash. VerifyProof returns an error if the
// proof contains invalid trie nodes or the wrong value.
func VerifyProof(rootHash common.Hash, key []byte, proofDb DatabaseReader) (value []byte, err error, nodes int) {
key = keybytesToHex(key)
wantHash := rootHash[:]
wantHash := rootHash
for i := 0; ; i++ {
buf, _ := proofDb.Get(wantHash)
buf, _ := proofDb.Get(wantHash[:])
if buf == nil {
return nil, fmt.Errorf("proof node %d (hash %064x) missing", i, wantHash[:]), i
return nil, fmt.Errorf("proof node %d (hash %064x) missing", i, wantHash), i
}
n, err := decodeNode(wantHash, buf, 0)
n, err := decodeNode(wantHash[:], buf, 0)
if err != nil {
return nil, fmt.Errorf("bad proof node %d: %v", i, err), i
}
@ -112,7 +109,7 @@ func VerifyProof(rootHash common.Hash, key []byte, proofDb DatabaseReader) (valu
return nil, nil, i
case hashNode:
key = keyrest
wantHash = cld
copy(wantHash[:], cld)
case valueNode:
return cld, nil, i + 1
}

View file

@ -23,10 +23,6 @@ import (
"github.com/ethereum/go-ethereum/log"
)
var secureKeyPrefix = []byte("secure-key-")
const secureKeyLength = 11 + 32 // Length of the above prefix + 32byte hash
// SecureTrie wraps a trie with key hashing. In a secure trie, all
// access operations hash the key using keccak256. This prevents
// calling code from creating long chains of nodes that
@ -39,8 +35,7 @@ const secureKeyLength = 11 + 32 // Length of the above prefix + 32byte hash
// SecureTrie is not safe for concurrent use.
type SecureTrie struct {
trie Trie
hashKeyBuf [secureKeyLength]byte
secKeyBuf [200]byte
hashKeyBuf [common.HashLength]byte
secKeyCache map[string][]byte
secKeyCacheOwner *SecureTrie // Pointer to self, replace the key cache on mismatch
}
@ -56,11 +51,11 @@ type SecureTrie struct {
// Loaded nodes are kept around until their 'cache generation' expires.
// A new cache generation is created by each call to Commit.
// cachelimit sets the number of past cache generations to keep.
func NewSecure(root common.Hash, db Database, pool *NodePool, cachelimit uint16) (*SecureTrie, error) {
func NewSecure(root common.Hash, db *Database, cachelimit uint16) (*SecureTrie, error) {
if db == nil {
panic("NewSecure called with nil database")
panic("trie.NewSecure called without a database")
}
trie, err := New(root, db, pool)
trie, err := New(root, db)
if err != nil {
return nil, err
}
@ -136,7 +131,7 @@ func (t *SecureTrie) GetKey(shaKey []byte) []byte {
if key, ok := t.getSecKeyCache()[string(shaKey)]; ok {
return key
}
key, _ := t.trie.db.Get(t.secKey(shaKey))
key, _ := t.trie.db.preimage(common.BytesToHash(shaKey))
return key
}
@ -145,8 +140,19 @@ func (t *SecureTrie) GetKey(shaKey []byte) []byte {
//
// Committing flushes nodes from memory. Subsequent Get calls will load nodes
// from the database.
func (t *SecureTrie) Commit() (root common.Hash, err error) {
return t.CommitTo(t.trie.db)
func (t *SecureTrie) Commit(onleaf LeafCallback) (root common.Hash, err error) {
// Write all the pre-images to the actual disk database
if len(t.getSecKeyCache()) > 0 {
t.trie.db.lock.Lock()
for hk, key := range t.secKeyCache {
t.trie.db.insertPreimage(common.BytesToHash([]byte(hk)), key)
}
t.trie.db.lock.Unlock()
t.secKeyCache = make(map[string][]byte)
}
// Commit the trie to its intermediate node database
return t.trie.Commit(onleaf)
}
func (t *SecureTrie) Hash() common.Hash {
@ -168,38 +174,11 @@ func (t *SecureTrie) NodeIterator(start []byte) NodeIterator {
return t.trie.NodeIterator(start)
}
// CommitTo writes all nodes and the secure hash pre-images to the given database.
// Nodes are stored with their sha3 hash as the key.
//
// Committing flushes nodes from memory. Subsequent Get calls will load nodes from
// the trie's database. Calling code must ensure that the changes made to db are
// written back to the trie's attached database before using the trie.
func (t *SecureTrie) CommitTo(db DatabaseWriter) (root common.Hash, err error) {
if len(t.getSecKeyCache()) > 0 {
for hk, key := range t.secKeyCache {
if err := db.Put(t.secKey([]byte(hk)), key); err != nil {
return common.Hash{}, err
}
}
t.secKeyCache = make(map[string][]byte)
}
return t.trie.CommitTo(db)
}
// secKey returns the database key for the preimage of key, as an ephemeral buffer.
// The caller must not hold onto the return value because it will become
// invalid on the next call to hashKey or secKey.
func (t *SecureTrie) secKey(key []byte) []byte {
buf := append(t.secKeyBuf[:0], secureKeyPrefix...)
buf = append(buf, key...)
return buf
}
// hashKey returns the hash of key as an ephemeral buffer.
// The caller must not hold onto the return value because it will become
// invalid on the next call to hashKey or secKey.
func (t *SecureTrie) hashKey(key []byte) []byte {
h := newHasher(0, 0)
h := newHasher(0, 0, nil)
h.sha.Reset()
h.sha.Write(key)
buf := h.sha.Sum(t.hashKeyBuf[:0])

View file

@ -28,16 +28,20 @@ import (
)
func newEmptySecure() *SecureTrie {
db, _ := ethdb.NewMemDatabase()
trie, _ := NewSecure(common.Hash{}, db, NewNodePool(), 0)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
trie, _ := NewSecure(common.Hash{}, triedb, 0)
return trie
}
// makeTestSecureTrie creates a large enough secure trie for testing.
func makeTestSecureTrie() (ethdb.Database, *SecureTrie, map[string][]byte) {
func makeTestSecureTrie() (*Database, *SecureTrie, map[string][]byte) {
// Create an empty trie
db, _ := ethdb.NewMemDatabase()
trie, _ := NewSecure(common.Hash{}, db, NewNodePool(), 0)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
trie, _ := NewSecure(common.Hash{}, triedb, 0)
// Fill it with some arbitrary data
content := make(map[string][]byte)
@ -58,10 +62,10 @@ func makeTestSecureTrie() (ethdb.Database, *SecureTrie, map[string][]byte) {
trie.Update(key, val)
}
}
trie.Commit()
trie.Commit(nil)
// Return the generated trie
return db, trie, content
return triedb, trie, content
}
func TestSecureDelete(t *testing.T) {
@ -137,7 +141,7 @@ func TestSecureTrieConcurrency(t *testing.T) {
tries[index].Update(key, val)
}
}
tries[index].Commit()
tries[index].Commit(nil)
}(i)
}
// Wait for all threads to finish

View file

@ -42,7 +42,7 @@ type request struct {
depth int // Depth level within the trie the node is located to prioritise DFS
deps int // Number of dependencies before allowed to commit this node
callback TrieSyncLeafCallback // Callback to invoke if a leaf node it reached on this branch
callback LeafCallback // Callback to invoke if a leaf node it reached on this branch
}
// SyncResult is a simple list to return missing nodes along with their request
@ -67,11 +67,6 @@ func newSyncMemBatch() *syncMemBatch {
}
}
// TrieSyncLeafCallback is a callback type invoked when a trie sync reaches a
// leaf node. It's used by state syncing to check if the leaf node requires some
// further data syncing.
type TrieSyncLeafCallback func(leaf []byte, parent common.Hash) error
// TrieSync is the main state trie synchronisation scheduler, which provides yet
// unknown trie hashes to retrieve, accepts node data associated with said hashes
// and reconstructs the trie step by step until all is done.
@ -83,7 +78,7 @@ type TrieSync struct {
}
// NewTrieSync creates a new trie data download scheduler.
func NewTrieSync(root common.Hash, database DatabaseReader, callback TrieSyncLeafCallback) *TrieSync {
func NewTrieSync(root common.Hash, database DatabaseReader, callback LeafCallback) *TrieSync {
ts := &TrieSync{
database: database,
membatch: newSyncMemBatch(),
@ -95,7 +90,7 @@ func NewTrieSync(root common.Hash, database DatabaseReader, callback TrieSyncLea
}
// AddSubTrie registers a new trie to the sync code, rooted at the designated parent.
func (s *TrieSync) AddSubTrie(root common.Hash, depth int, parent common.Hash, callback TrieSyncLeafCallback) {
func (s *TrieSync) AddSubTrie(root common.Hash, depth int, parent common.Hash, callback LeafCallback) {
// Short circuit if the trie is empty or already known
if root == emptyRoot {
return

View file

@ -25,10 +25,11 @@ import (
)
// makeTestTrie create a sample test trie to test node-wise reconstruction.
func makeTestTrie() (ethdb.Database, *Trie, map[string][]byte) {
func makeTestTrie() (*Database, *Trie, map[string][]byte) {
// Create an empty trie
db, _ := ethdb.NewMemDatabase()
trie, _ := New(common.Hash{}, db, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
trie, _ := New(common.Hash{}, triedb)
// Fill it with some arbitrary data
content := make(map[string][]byte)
@ -49,17 +50,17 @@ func makeTestTrie() (ethdb.Database, *Trie, map[string][]byte) {
trie.Update(key, val)
}
}
trie.Commit()
trie.Commit(nil)
// Return the generated trie
return db, trie, content
return triedb, trie, content
}
// checkTrieContents cross references a reconstructed trie with an expected data
// content map.
func checkTrieContents(t *testing.T, db Database, root []byte, content map[string][]byte) {
func checkTrieContents(t *testing.T, db *Database, root []byte, content map[string][]byte) {
// Check root availability and trie contents
trie, err := New(common.BytesToHash(root), db, nil)
trie, err := New(common.BytesToHash(root), db)
if err != nil {
t.Fatalf("failed to create trie at %x: %v", root, err)
}
@ -74,9 +75,9 @@ func checkTrieContents(t *testing.T, db Database, root []byte, content map[strin
}
// checkTrieConsistency checks that all nodes in a trie are indeed present.
func checkTrieConsistency(db Database, root common.Hash) error {
func checkTrieConsistency(db *Database, root common.Hash) error {
// Create and iterate a trie rooted in a subnode
trie, err := New(root, db, nil)
trie, err := New(root, db)
if err != nil {
return nil // Consider a non existent state consistent
}
@ -88,12 +89,18 @@ func checkTrieConsistency(db Database, root common.Hash) error {
// Tests that an empty trie is not scheduled for syncing.
func TestEmptyTrieSync(t *testing.T) {
emptyA, _ := New(common.Hash{}, nil, nil)
emptyB, _ := New(emptyRoot, nil, nil)
diskdbA, _ := ethdb.NewMemDatabase()
triedbA := NewDatabase(diskdbA)
diskdbB, _ := ethdb.NewMemDatabase()
triedbB := NewDatabase(diskdbB)
emptyA, _ := New(common.Hash{}, triedbA)
emptyB, _ := New(emptyRoot, triedbB)
for i, trie := range []*Trie{emptyA, emptyB} {
db, _ := ethdb.NewMemDatabase()
if req := NewTrieSync(common.BytesToHash(trie.Root()), db, nil).Missing(1); len(req) != 0 {
diskdb, _ := ethdb.NewMemDatabase()
if req := NewTrieSync(trie.Hash(), diskdb, nil).Missing(1); len(req) != 0 {
t.Errorf("test %d: content requested for empty trie: %v", i, req)
}
}
@ -109,14 +116,15 @@ func testIterativeTrieSync(t *testing.T, batch int) {
srcDb, srcTrie, srcData := makeTestTrie()
// Create a destination trie and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
sched := NewTrieSync(common.BytesToHash(srcTrie.Root()), dstDb, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
sched := NewTrieSync(srcTrie.Hash(), diskdb, nil)
queue := append([]common.Hash{}, sched.Missing(batch)...)
for len(queue) > 0 {
results := make([]SyncResult, len(queue))
for i, hash := range queue {
data, err := srcDb.Get(hash.Bytes())
data, err := srcDb.Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x: %v", hash, err)
}
@ -125,13 +133,13 @@ func testIterativeTrieSync(t *testing.T, batch int) {
if _, index, err := sched.Process(results); err != nil {
t.Fatalf("failed to process result #%d: %v", index, err)
}
if index, err := sched.Commit(dstDb); err != nil {
if index, err := sched.Commit(diskdb); err != nil {
t.Fatalf("failed to commit data #%d: %v", index, err)
}
queue = append(queue[:0], sched.Missing(batch)...)
}
// Cross check that the two tries are in sync
checkTrieContents(t, dstDb, srcTrie.Root(), srcData)
checkTrieContents(t, triedb, srcTrie.Root(), srcData)
}
// Tests that the trie scheduler can correctly reconstruct the state even if only
@ -141,15 +149,16 @@ func TestIterativeDelayedTrieSync(t *testing.T) {
srcDb, srcTrie, srcData := makeTestTrie()
// Create a destination trie and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
sched := NewTrieSync(common.BytesToHash(srcTrie.Root()), dstDb, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
sched := NewTrieSync(srcTrie.Hash(), diskdb, nil)
queue := append([]common.Hash{}, sched.Missing(10000)...)
for len(queue) > 0 {
// Sync only half of the scheduled nodes
results := make([]SyncResult, len(queue)/2+1)
for i, hash := range queue[:len(results)] {
data, err := srcDb.Get(hash.Bytes())
data, err := srcDb.Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x: %v", hash, err)
}
@ -158,13 +167,13 @@ func TestIterativeDelayedTrieSync(t *testing.T) {
if _, index, err := sched.Process(results); err != nil {
t.Fatalf("failed to process result #%d: %v", index, err)
}
if index, err := sched.Commit(dstDb); err != nil {
if index, err := sched.Commit(diskdb); err != nil {
t.Fatalf("failed to commit data #%d: %v", index, err)
}
queue = append(queue[len(results):], sched.Missing(10000)...)
}
// Cross check that the two tries are in sync
checkTrieContents(t, dstDb, srcTrie.Root(), srcData)
checkTrieContents(t, triedb, srcTrie.Root(), srcData)
}
// Tests that given a root hash, a trie can sync iteratively on a single thread,
@ -178,8 +187,9 @@ func testIterativeRandomTrieSync(t *testing.T, batch int) {
srcDb, srcTrie, srcData := makeTestTrie()
// Create a destination trie and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
sched := NewTrieSync(common.BytesToHash(srcTrie.Root()), dstDb, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
sched := NewTrieSync(srcTrie.Hash(), diskdb, nil)
queue := make(map[common.Hash]struct{})
for _, hash := range sched.Missing(batch) {
@ -189,7 +199,7 @@ func testIterativeRandomTrieSync(t *testing.T, batch int) {
// Fetch all the queued nodes in a random order
results := make([]SyncResult, 0, len(queue))
for hash := range queue {
data, err := srcDb.Get(hash.Bytes())
data, err := srcDb.Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x: %v", hash, err)
}
@ -199,7 +209,7 @@ func testIterativeRandomTrieSync(t *testing.T, batch int) {
if _, index, err := sched.Process(results); err != nil {
t.Fatalf("failed to process result #%d: %v", index, err)
}
if index, err := sched.Commit(dstDb); err != nil {
if index, err := sched.Commit(diskdb); err != nil {
t.Fatalf("failed to commit data #%d: %v", index, err)
}
queue = make(map[common.Hash]struct{})
@ -208,7 +218,7 @@ func testIterativeRandomTrieSync(t *testing.T, batch int) {
}
}
// Cross check that the two tries are in sync
checkTrieContents(t, dstDb, srcTrie.Root(), srcData)
checkTrieContents(t, triedb, srcTrie.Root(), srcData)
}
// Tests that the trie scheduler can correctly reconstruct the state even if only
@ -218,8 +228,9 @@ func TestIterativeRandomDelayedTrieSync(t *testing.T) {
srcDb, srcTrie, srcData := makeTestTrie()
// Create a destination trie and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
sched := NewTrieSync(common.BytesToHash(srcTrie.Root()), dstDb, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
sched := NewTrieSync(srcTrie.Hash(), diskdb, nil)
queue := make(map[common.Hash]struct{})
for _, hash := range sched.Missing(10000) {
@ -229,7 +240,7 @@ func TestIterativeRandomDelayedTrieSync(t *testing.T) {
// Sync only half of the scheduled nodes, even those in random order
results := make([]SyncResult, 0, len(queue)/2+1)
for hash := range queue {
data, err := srcDb.Get(hash.Bytes())
data, err := srcDb.Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x: %v", hash, err)
}
@ -243,7 +254,7 @@ func TestIterativeRandomDelayedTrieSync(t *testing.T) {
if _, index, err := sched.Process(results); err != nil {
t.Fatalf("failed to process result #%d: %v", index, err)
}
if index, err := sched.Commit(dstDb); err != nil {
if index, err := sched.Commit(diskdb); err != nil {
t.Fatalf("failed to commit data #%d: %v", index, err)
}
for _, result := range results {
@ -254,7 +265,7 @@ func TestIterativeRandomDelayedTrieSync(t *testing.T) {
}
}
// Cross check that the two tries are in sync
checkTrieContents(t, dstDb, srcTrie.Root(), srcData)
checkTrieContents(t, triedb, srcTrie.Root(), srcData)
}
// Tests that a trie sync will not request nodes multiple times, even if they
@ -264,8 +275,9 @@ func TestDuplicateAvoidanceTrieSync(t *testing.T) {
srcDb, srcTrie, srcData := makeTestTrie()
// Create a destination trie and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
sched := NewTrieSync(common.BytesToHash(srcTrie.Root()), dstDb, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
sched := NewTrieSync(srcTrie.Hash(), diskdb, nil)
queue := append([]common.Hash{}, sched.Missing(0)...)
requested := make(map[common.Hash]struct{})
@ -273,7 +285,7 @@ func TestDuplicateAvoidanceTrieSync(t *testing.T) {
for len(queue) > 0 {
results := make([]SyncResult, len(queue))
for i, hash := range queue {
data, err := srcDb.Get(hash.Bytes())
data, err := srcDb.Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x: %v", hash, err)
}
@ -287,13 +299,13 @@ func TestDuplicateAvoidanceTrieSync(t *testing.T) {
if _, index, err := sched.Process(results); err != nil {
t.Fatalf("failed to process result #%d: %v", index, err)
}
if index, err := sched.Commit(dstDb); err != nil {
if index, err := sched.Commit(diskdb); err != nil {
t.Fatalf("failed to commit data #%d: %v", index, err)
}
queue = append(queue[:0], sched.Missing(0)...)
}
// Cross check that the two tries are in sync
checkTrieContents(t, dstDb, srcTrie.Root(), srcData)
checkTrieContents(t, triedb, srcTrie.Root(), srcData)
}
// Tests that at any point in time during a sync, only complete sub-tries are in
@ -303,8 +315,9 @@ func TestIncompleteTrieSync(t *testing.T) {
srcDb, srcTrie, _ := makeTestTrie()
// Create a destination trie and sync with the scheduler
dstDb, _ := ethdb.NewMemDatabase()
sched := NewTrieSync(common.BytesToHash(srcTrie.Root()), dstDb, nil)
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
sched := NewTrieSync(srcTrie.Hash(), diskdb, nil)
added := []common.Hash{}
queue := append([]common.Hash{}, sched.Missing(1)...)
@ -312,7 +325,7 @@ func TestIncompleteTrieSync(t *testing.T) {
// Fetch a batch of trie nodes
results := make([]SyncResult, len(queue))
for i, hash := range queue {
data, err := srcDb.Get(hash.Bytes())
data, err := srcDb.Node(hash)
if err != nil {
t.Fatalf("failed to retrieve node data for %x: %v", hash, err)
}
@ -322,7 +335,7 @@ func TestIncompleteTrieSync(t *testing.T) {
if _, index, err := sched.Process(results); err != nil {
t.Fatalf("failed to process result #%d: %v", index, err)
}
if index, err := sched.Commit(dstDb); err != nil {
if index, err := sched.Commit(diskdb); err != nil {
t.Fatalf("failed to commit data #%d: %v", index, err)
}
for _, result := range results {
@ -330,7 +343,7 @@ func TestIncompleteTrieSync(t *testing.T) {
}
// Check that all known sub-tries in the synced trie are complete
for _, root := range added {
if err := checkTrieConsistency(dstDb, root); err != nil {
if err := checkTrieConsistency(triedb, root); err != nil {
t.Fatalf("trie inconsistent: %v", err)
}
}
@ -340,12 +353,12 @@ func TestIncompleteTrieSync(t *testing.T) {
// Sanity check that removing any node from the database is detected
for _, node := range added[1:] {
key := node.Bytes()
value, _ := dstDb.Get(key)
value, _ := diskdb.Get(key)
dstDb.Delete(key)
if err := checkTrieConsistency(dstDb, added[0]); err == nil {
diskdb.Delete(key)
if err := checkTrieConsistency(triedb, added[0]); err == nil {
t.Fatalf("trie inconsistency not caught, missing: %x", key)
}
dstDb.Put(key, value)
diskdb.Put(key, value)
}
}

View file

@ -22,16 +22,17 @@ import (
"fmt"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/crypto/sha3"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/log"
"github.com/rcrowley/go-metrics"
)
var (
// This is the known root hash of an empty trie.
// emptyRoot is the known root hash of an empty trie.
emptyRoot = common.HexToHash("56e81f171bcc55a6ff8345e692c0f86e5b48e01b996cadc001622fb5e363b421")
// This is the known hash of an empty state trie entry.
emptyState common.Hash
// emptyState is the known hash of an empty state trie entry.
emptyState = crypto.Keccak256Hash(nil)
)
var (
@ -53,29 +54,10 @@ func CacheUnloads() int64 {
return cacheUnloadCounter.Count()
}
func init() {
sha3.NewKeccak256().Sum(emptyState[:0])
}
// Database must be implemented by backing stores for the trie.
type Database interface {
DatabaseReader
DatabaseWriter
}
// DatabaseReader wraps the Get method of a backing store for the trie.
type DatabaseReader interface {
Get(key []byte) (value []byte, err error)
Has(key []byte) (bool, error)
}
// DatabaseWriter wraps the Put method of a backing store for the trie.
type DatabaseWriter interface {
// Put stores the mapping key->value in the database.
// Implementations must not hold onto the value bytes, the trie
// will reuse the slice across calls to Put.
Put(key, value []byte) error
}
// LeafCallback is a callback type invoked when a trie operation reaches a leaf
// node. It's used by state sync and commit to allow handling external references
// between account and storage tries.
type LeafCallback func(leaf []byte, parent common.Hash) error
// Trie is a Merkle Patricia Trie.
// The zero value is an empty trie with no database.
@ -83,9 +65,8 @@ type DatabaseWriter interface {
//
// Trie is not safe for concurrent use.
type Trie struct {
db *Database
root node
db Database
pool *NodePool
originalRoot common.Hash
// Cache generation values.
@ -112,12 +93,15 @@ func (t *Trie) newFlag() nodeFlag {
// trie is initially empty and does not require a database. Otherwise,
// New will panic if db is nil and returns a MissingNodeError if root does
// not exist in the database. Accessing the trie loads nodes from db on demand.
func New(root common.Hash, db Database, pool *NodePool) (*Trie, error) {
trie := &Trie{db: db, pool: pool, originalRoot: root}
func New(root common.Hash, db *Database) (*Trie, error) {
if db == nil {
panic("trie.New called without a database")
}
trie := &Trie{
db: db,
originalRoot: root,
}
if (root != common.Hash{}) && root != emptyRoot {
if db == nil {
panic("trie.New: cannot use existing root without a database")
}
rootnode, err := trie.resolveHash(root[:], nil)
if err != nil {
return nil, err
@ -448,15 +432,9 @@ func (t *Trie) resolve(n node, prefix []byte) (node, error) {
func (t *Trie) resolveHash(n hashNode, prefix []byte) (node, error) {
cacheMissCounter.Inc(1)
// Try to load the node from the recent mempool
hash := common.BytesToHash(n)
if t.pool != nil {
if enc := t.pool.Fetch(hash); enc != nil {
return mustDecodeNode(n, enc, t.cachegen), nil
}
}
// Node not in the mempool, load it from disk
enc, err := t.db.Get(n)
enc, err := t.db.Node(hash)
if err != nil || enc == nil {
return nil, &MissingNodeError{NodeHash: hash, Path: prefix}
}
@ -470,47 +448,18 @@ func (t *Trie) Root() []byte { return t.Hash().Bytes() }
// Hash returns the root hash of the trie. It does not write to the
// database and can be used even if the trie doesn't have one.
func (t *Trie) Hash() common.Hash {
hash, cached, _ := t.hashRoot(nil)
hash, cached, _ := t.hashRoot(nil, nil)
t.root = cached
return common.BytesToHash(hash.(hashNode))
}
// Commit writes all nodes to the trie's database.
// Nodes are stored with their sha3 hash as the key.
//
// Committing flushes nodes from memory.
// Subsequent Get calls will load nodes from the database.
func (t *Trie) Commit() (root common.Hash, err error) {
// Commit writes all nodes to the trie's memory database, tracking the internal
// and external (for account tries) references.
func (t *Trie) Commit(onleaf LeafCallback) (root common.Hash, err error) {
if t.db == nil {
panic("Commit called on trie with nil database")
panic("commit called on trie with nil database")
}
return t.CommitTo(t.db)
}
// CommitTo writes all nodes to the given database.
// Nodes are stored with their sha3 hash as the key.
//
// Committing flushes nodes from memory. Subsequent Get calls will
// load nodes from the trie's database. Calling code must ensure that
// the changes made to db are written back to the trie's attached
// database before using the trie.
func (t *Trie) CommitTo(db DatabaseWriter) (root common.Hash, err error) {
// Retrieve the intermedia trie node memory cache if really writing
var pool *NodePool
if db != nil {
if pool = t.pool; pool == nil {
// If the trie has no intermediate memory pool, but actual database write was
// nonetheless requested, store into an emphemeral pool and flush out to disk.
pool = NewNodePool()
defer func() {
for hash, blob := range pool.cache {
db.Put(hash[:], blob)
}
}()
}
}
// Calculate the root hash and store in the mempool if requested
hash, cached, err := t.hashRoot(pool)
hash, cached, err := t.hashRoot(t.db, onleaf)
if err != nil {
return common.Hash{}, err
}
@ -519,11 +468,11 @@ func (t *Trie) CommitTo(db DatabaseWriter) (root common.Hash, err error) {
return common.BytesToHash(hash.(hashNode)), nil
}
func (t *Trie) hashRoot(pool *NodePool) (node, node, error) {
func (t *Trie) hashRoot(db *Database, onleaf LeafCallback) (node, node, error) {
if t.root == nil {
return hashNode(emptyRoot.Bytes()), nil, nil
}
h := newHasher(t.cachegen, t.cachelimit)
h := newHasher(t.cachegen, t.cachelimit, onleaf)
defer returnHasherToPool(h)
return h.hash(t.root, pool, true)
return h.hash(t.root, db, true)
}

View file

@ -43,8 +43,8 @@ func init() {
// Used for testing
func newEmpty() *Trie {
db, _ := ethdb.NewMemDatabase()
trie, _ := New(common.Hash{}, db, NewNodePool())
diskdb, _ := ethdb.NewMemDatabase()
trie, _ := New(common.Hash{}, NewDatabase(diskdb))
return trie
}
@ -68,8 +68,8 @@ func TestNull(t *testing.T) {
}
func TestMissingRoot(t *testing.T) {
db, _ := ethdb.NewMemDatabase()
trie, err := New(common.HexToHash("0beec7b5ea3f0fdbc95d0dd47f3c5bc275da8a33"), db, NewNodePool())
diskdb, _ := ethdb.NewMemDatabase()
trie, err := New(common.HexToHash("0beec7b5ea3f0fdbc95d0dd47f3c5bc275da8a33"), NewDatabase(diskdb))
if trie != nil {
t.Error("New returned non-nil trie for invalid root")
}
@ -78,75 +78,75 @@ func TestMissingRoot(t *testing.T) {
}
}
func TestMissingNodeDirect(t *testing.T) { testMissingNode(t, false) }
func TestMissingNodePooled(t *testing.T) { testMissingNode(t, true) }
func TestMissingNodeDisk(t *testing.T) { testMissingNode(t, false) }
func TestMissingNodeMemonly(t *testing.T) { testMissingNode(t, true) }
func testMissingNode(t *testing.T, pooled bool) {
var pool *NodePool
if pooled {
pool = NewNodePool()
}
db, _ := ethdb.NewMemDatabase()
func testMissingNode(t *testing.T, memonly bool) {
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
trie, _ := New(common.Hash{}, db, pool)
trie, _ := New(common.Hash{}, triedb)
updateString(trie, "120000", "qwerqwerqwerqwerqwerqwerqwerqwer")
updateString(trie, "123456", "asdfasdfasdfasdfasdfasdfasdfasdf")
root, _ := trie.Commit()
root, _ := trie.Commit(nil)
if !memonly {
triedb.Commit(root, diskdb)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
_, err := trie.TryGet([]byte("120000"))
if err != nil {
t.Errorf("Unexpected error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
_, err = trie.TryGet([]byte("120099"))
if err != nil {
t.Errorf("Unexpected error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
_, err = trie.TryGet([]byte("123456"))
if err != nil {
t.Errorf("Unexpected error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
err = trie.TryUpdate([]byte("120099"), []byte("zxcvzxcvzxcvzxcvzxcvzxcvzxcvzxcv"))
if err != nil {
t.Errorf("Unexpected error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
err = trie.TryDelete([]byte("123456"))
if err != nil {
t.Errorf("Unexpected error: %v", err)
}
hash := common.HexToHash("0xe1d943cc8f061a0c0b98162830b970395ac9315654824bf21b73b891365262f9")
if pooled {
delete(pool.cache, hash)
if memonly {
delete(triedb.nodes, hash)
} else {
db.Delete(hash[:])
diskdb.Delete(hash[:])
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
_, err = trie.TryGet([]byte("120000"))
if _, ok := err.(*MissingNodeError); !ok {
t.Errorf("Wrong error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
_, err = trie.TryGet([]byte("120099"))
if _, ok := err.(*MissingNodeError); !ok {
t.Errorf("Wrong error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
_, err = trie.TryGet([]byte("123456"))
if err != nil {
t.Errorf("Unexpected error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
err = trie.TryUpdate([]byte("120099"), []byte("zxcv"))
if _, ok := err.(*MissingNodeError); !ok {
t.Errorf("Wrong error: %v", err)
}
trie, _ = New(root, db, pool)
trie, _ = New(root, triedb)
err = trie.TryDelete([]byte("123456"))
if _, ok := err.(*MissingNodeError); !ok {
t.Errorf("Wrong error: %v", err)
@ -170,7 +170,7 @@ func TestInsert(t *testing.T) {
updateString(trie, "A", "aaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaaa")
exp = common.HexToHash("d23786fb4a010da3ce639d66d5e904a11dbc02746d1ce25029e53290cabf28ab")
root, err := trie.Commit()
root, err := trie.Commit(nil)
if err != nil {
t.Fatalf("commit error: %v", err)
}
@ -199,7 +199,7 @@ func TestGet(t *testing.T) {
if i == 1 {
return
}
trie.Commit()
trie.Commit(nil)
}
}
@ -268,13 +268,13 @@ func TestReplication(t *testing.T) {
for _, val := range vals {
updateString(trie, val.k, val.v)
}
exp, err := trie.Commit()
exp, err := trie.Commit(nil)
if err != nil {
t.Fatalf("commit error: %v", err)
}
// create a new trie on top of the database and check that lookups work.
trie2, err := New(exp, trie.db, trie.pool)
trie2, err := New(exp, trie.db)
if err != nil {
t.Fatalf("can't recreate trie at %x: %v", exp, err)
}
@ -283,7 +283,7 @@ func TestReplication(t *testing.T) {
t.Errorf("trie2 doesn't have %q => %q", kv.k, kv.v)
}
}
hash, err := trie2.Commit()
hash, err := trie2.Commit(nil)
if err != nil {
t.Fatalf("commit error: %v", err)
}
@ -319,13 +319,13 @@ func TestLargeValue(t *testing.T) {
}
type countingDB struct {
Database
DatabaseReader
gets map[string]int
}
func (db *countingDB) Get(key []byte) ([]byte, error) {
db.gets[string(key)]++
return db.Database.Get(key)
return db.DatabaseReader.Get(key)
}
// TestCacheUnload checks that decoded nodes are unloaded after a
@ -337,19 +337,20 @@ func TestCacheUnload(t *testing.T) {
key2 := "---some other branch"
updateString(trie, key1, "this is the branch of key1.")
updateString(trie, key2, "this is the branch of key2.")
root, _ := trie.Commit()
root, _ := trie.Commit(nil)
trie.db.Commit(root, trie.db.diskdb.(DatabaseWriter))
// Commit the trie repeatedly and access key1.
// The branch containing it is loaded from DB exactly two times:
// in the 0th and 6th iteration.
db := &countingDB{Database: trie.db, gets: make(map[string]int)}
trie, _ = New(root, db, trie.pool)
db := &countingDB{DatabaseReader: trie.db.diskdb, gets: make(map[string]int)}
trie, _ = New(root, NewDatabase(db))
trie.SetCacheLimit(5)
for i := 0; i < 12; i++ {
getString(trie, key1)
trie.Commit()
trie.Commit(nil)
}
// Check that it got loaded two times.
for dbkey, count := range db.gets {
if count != 2 {
@ -412,10 +413,10 @@ func (randTest) Generate(r *rand.Rand, size int) reflect.Value {
}
func runRandTest(rt randTest) bool {
db, _ := ethdb.NewMemDatabase()
mp := NewNodePool()
diskdb, _ := ethdb.NewMemDatabase()
triedb := NewDatabase(diskdb)
tr, _ := New(common.Hash{}, db, mp)
tr, _ := New(common.Hash{}, triedb)
values := make(map[string]string) // tracks content of the trie
for i, step := range rt {
@ -433,23 +434,23 @@ func runRandTest(rt randTest) bool {
rt[i].err = fmt.Errorf("mismatch for key 0x%x, got 0x%x want 0x%x", step.key, v, want)
}
case opCommit:
_, rt[i].err = tr.Commit()
_, rt[i].err = tr.Commit(nil)
case opHash:
tr.Hash()
case opReset:
hash, err := tr.Commit()
hash, err := tr.Commit(nil)
if err != nil {
rt[i].err = err
return false
}
newtr, err := New(hash, db, mp)
newtr, err := New(hash, triedb)
if err != nil {
rt[i].err = err
return false
}
tr = newtr
case opItercheckhash:
checktr, _ := New(common.Hash{}, nil, nil)
checktr, _ := New(common.Hash{}, triedb)
it := NewIterator(tr.NodeIterator(nil))
for it.Next() {
checktr.Update(it.Key, it.Value)
@ -522,7 +523,7 @@ func benchGet(b *testing.B, commit bool) {
trie := new(Trie)
if commit {
_, tmpdb := tempDB()
trie, _ = New(common.Hash{}, tmpdb, nil)
trie, _ = New(common.Hash{}, tmpdb)
}
k := make([]byte, 32)
for i := 0; i < benchElemCount; i++ {
@ -531,7 +532,7 @@ func benchGet(b *testing.B, commit bool) {
}
binary.LittleEndian.PutUint64(k, benchElemCount/2)
if commit {
trie.Commit()
trie.Commit(nil)
}
b.ResetTimer()
@ -541,7 +542,7 @@ func benchGet(b *testing.B, commit bool) {
b.StopTimer()
if commit {
ldb := trie.db.(*ethdb.LDBDatabase)
ldb := trie.db.diskdb.(*ethdb.LDBDatabase)
ldb.Close()
os.RemoveAll(ldb.Path())
}
@ -592,16 +593,16 @@ func BenchmarkHash(b *testing.B) {
trie.Hash()
}
func tempDB() (string, Database) {
func tempDB() (string, *Database) {
dir, err := ioutil.TempDir("", "trie-bench")
if err != nil {
panic(fmt.Sprintf("can't create temporary directory: %v", err))
}
db, err := ethdb.NewLDBDatabase(dir, 256, 0)
diskdb, err := ethdb.NewLDBDatabase(dir, 256, 0)
if err != nil {
panic(fmt.Sprintf("can't create temporary database: %v", err))
}
return dir, db
return dir, NewDatabase(diskdb)
}
func getString(trie *Trie, k string) []byte {