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464 lines
17 KiB
464 lines
17 KiB
// Copyright 2018 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package rawdb
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import (
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"bytes"
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"errors"
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"fmt"
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"os"
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"path"
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"path/filepath"
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"strings"
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"time"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/ethdb/leveldb"
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"github.com/ethereum/go-ethereum/ethdb/memorydb"
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"github.com/ethereum/go-ethereum/log"
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"github.com/harmony-one/harmony/internal/utils"
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"github.com/olekukonko/tablewriter"
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)
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var errNotSupported = errors.New("not supported")
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// convertLegacyFn takes a raw freezer entry in an older format and
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// returns it in the new format.
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type convertLegacyFn = func([]byte) ([]byte, error)
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// freezerdb is a database wrapper that enabled freezer data retrievals.
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type freezerdb struct {
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ancientRoot string
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ethdb.KeyValueStore
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ethdb.AncientStore
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}
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// AncientDatadir returns the path of root ancient directory.
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func (frdb *freezerdb) AncientDatadir() (string, error) {
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return frdb.ancientRoot, nil
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}
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// Close implements io.Closer, closing both the fast key-value store as well as
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// the slow ancient tables.
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func (frdb *freezerdb) Close() error {
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var errs []error
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if err := frdb.AncientStore.Close(); err != nil {
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errs = append(errs, err)
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}
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if err := frdb.KeyValueStore.Close(); err != nil {
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errs = append(errs, err)
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}
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if len(errs) != 0 {
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return fmt.Errorf("%v", errs)
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}
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return nil
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}
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// nofreezedb is a database wrapper that disables freezer data retrievals.
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type nofreezedb struct {
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ethdb.KeyValueStore
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}
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// HasAncient returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) HasAncient(kind string, number uint64) (bool, error) {
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return false, errNotSupported
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}
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// Ancient returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) Ancient(kind string, number uint64) ([]byte, error) {
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return nil, errNotSupported
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}
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// AncientRange returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) AncientRange(kind string, start, max, maxByteSize uint64) ([][]byte, error) {
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return nil, errNotSupported
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}
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// Ancients returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) Ancients() (uint64, error) {
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return 0, errNotSupported
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}
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// Tail returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) Tail() (uint64, error) {
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return 0, errNotSupported
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}
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// AncientSize returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) AncientSize(kind string) (uint64, error) {
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return 0, errNotSupported
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}
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// ModifyAncients is not supported.
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func (db *nofreezedb) ModifyAncients(func(ethdb.AncientWriteOp) error) (int64, error) {
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return 0, errNotSupported
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}
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// TruncateHead returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) TruncateHead(items uint64) error {
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return errNotSupported
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}
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// TruncateTail returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) TruncateTail(items uint64) error {
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return errNotSupported
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}
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// Sync returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) Sync() error {
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return errNotSupported
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}
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func (db *nofreezedb) ReadAncients(fn func(reader ethdb.AncientReaderOp) error) (err error) {
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// Unlike other ancient-related methods, this method does not return
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// errNotSupported when invoked.
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// The reason for this is that the caller might want to do several things:
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// 1. Check if something is in freezer,
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// 2. If not, check leveldb.
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//
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// This will work, since the ancient-checks inside 'fn' will return errors,
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// and the leveldb work will continue.
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//
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// If we instead were to return errNotSupported here, then the caller would
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// have to explicitly check for that, having an extra clause to do the
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// non-ancient operations.
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return fn(db)
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}
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// MigrateTable processes the entries in a given table in sequence
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// converting them to a new format if they're of an old format.
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func (db *nofreezedb) MigrateTable(kind string, convert convertLegacyFn) error {
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return errNotSupported
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}
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// AncientDatadir returns an error as we don't have a backing chain freezer.
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func (db *nofreezedb) AncientDatadir() (string, error) {
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return "", errNotSupported
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}
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// NewDatabase creates a high level database on top of a given key-value data
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// store without a freezer moving immutable chain segments into cold storage.
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func NewDatabase(db ethdb.KeyValueStore) ethdb.Database {
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return &nofreezedb{KeyValueStore: db}
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}
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// resolveChainFreezerDir is a helper function which resolves the absolute path
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// of chain freezer by considering backward compatibility.
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// This function is NOT used, just ported over from the Ethereum
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func resolveChainFreezerDir(ancient string) string {
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// Check if the chain freezer is already present in the specified
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// sub folder, if not then two possibilities:
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// - chain freezer is not initialized
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// - chain freezer exists in legacy location (root ancient folder)
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freezer := path.Join(ancient, chainFreezerName)
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if !common.FileExist(freezer) {
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if !common.FileExist(ancient) {
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// The entire ancient store is not initialized, still use the sub
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// folder for initialization.
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} else {
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// Ancient root is already initialized, then we hold the assumption
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// that chain freezer is also initialized and located in root folder.
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// In this case fallback to legacy location.
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freezer = ancient
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log.Info("Found legacy ancient chain path", "location", ancient)
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}
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}
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return freezer
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}
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// NewMemoryDatabase creates an ephemeral in-memory key-value database without a
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// freezer moving immutable chain segments into cold storage.
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func NewMemoryDatabase() ethdb.Database {
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return NewDatabase(memorydb.New())
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}
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// NewMemoryDatabaseWithCap creates an ephemeral in-memory key-value database
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// with an initial starting capacity, but without a freezer moving immutable
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// chain segments into cold storage.
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func NewMemoryDatabaseWithCap(size int) ethdb.Database {
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return NewDatabase(memorydb.NewWithCap(size))
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}
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// NewLevelDBDatabase creates a persistent key-value database without a freezer
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// moving immutable chain segments into cold storage.
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func NewLevelDBDatabase(file string, cache int, handles int, namespace string, readonly bool) (ethdb.Database, error) {
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db, err := leveldb.New(file, cache, handles, namespace, readonly)
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if err != nil {
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return nil, err
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}
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log.Info("Using LevelDB as the backing database")
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return NewDatabase(db), nil
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}
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const (
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dbPebble = "pebble"
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dbLeveldb = "leveldb"
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)
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// hasPreexistingDb checks the given data directory whether a database is already
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// instantiated at that location, and if so, returns the type of database (or the
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// empty string).
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func hasPreexistingDb(path string) string {
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if _, err := os.Stat(filepath.Join(path, "CURRENT")); err != nil {
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return "" // No pre-existing db
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}
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if matches, err := filepath.Glob(filepath.Join(path, "OPTIONS*")); len(matches) > 0 || err != nil {
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if err != nil {
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panic(err) // only possible if the pattern is malformed
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}
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return dbPebble
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}
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return dbLeveldb
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}
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// OpenOptions contains the options to apply when opening a database.
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// OBS: If AncientsDirectory is empty, it indicates that no freezer is to be used.
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type OpenOptions struct {
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Type string // "leveldb" | "pebble"
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Directory string // the datadir
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AncientsDirectory string // the ancients-dir
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Namespace string // the namespace for database relevant metrics
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Cache int // the capacity(in megabytes) of the data caching
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Handles int // number of files to be open simultaneously
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ReadOnly bool
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}
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// openKeyValueDatabase opens a disk-based key-value database, e.g. leveldb or pebble.
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//
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// type == null type != null
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// +----------------------------------------
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// db is non-existent | leveldb default | specified type
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// db is existent | from db | specified type (if compatible)
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func openKeyValueDatabase(o OpenOptions) (ethdb.Database, error) {
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existingDb := hasPreexistingDb(o.Directory)
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if len(existingDb) != 0 && len(o.Type) != 0 && o.Type != existingDb {
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return nil, fmt.Errorf("db.engine choice was %v but found pre-existing %v database in specified data directory", o.Type, existingDb)
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}
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if o.Type == dbPebble || existingDb == dbPebble {
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if PebbleEnabled {
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log.Info("Using pebble as the backing database")
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return NewPebbleDBDatabase(o.Directory, o.Cache, o.Handles, o.Namespace, o.ReadOnly)
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} else {
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return nil, errors.New("db.engine 'pebble' not supported on this platform")
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}
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}
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if len(o.Type) != 0 && o.Type != dbLeveldb {
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return nil, fmt.Errorf("unknown db.engine %v", o.Type)
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}
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log.Info("Using leveldb as the backing database")
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// Use leveldb, either as default (no explicit choice), or pre-existing, or chosen explicitly
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return NewLevelDBDatabase(o.Directory, o.Cache, o.Handles, o.Namespace, o.ReadOnly)
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}
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type counter uint64
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func (c counter) String() string {
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return fmt.Sprintf("%d", c)
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}
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func (c counter) Percentage(current uint64) string {
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return fmt.Sprintf("%d", current*100/uint64(c))
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}
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// stat stores sizes and count for a parameter
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type stat struct {
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size common.StorageSize
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count counter
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}
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// Add size to the stat and increase the counter by 1
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func (s *stat) Add(size common.StorageSize) {
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s.size += size
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s.count++
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}
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func (s *stat) Size() string {
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return s.size.String()
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}
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func (s *stat) Count() string {
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return s.count.String()
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}
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// InspectDatabase traverses the entire database and checks the size
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// of all different categories of data.
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// This function is NOT used, just ported over from the Ethereum
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func InspectDatabase(db ethdb.Database, keyPrefix, keyStart []byte) error {
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it := db.NewIterator(keyPrefix, keyStart)
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defer it.Release()
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var (
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count int64
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start = time.Now()
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logged = time.Now()
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// Key-value store statistics
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headers stat
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bodies stat
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receipts stat
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tds stat
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numHashPairings stat
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hashNumPairings stat
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tries stat
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codes stat
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txLookups stat
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accountSnaps stat
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storageSnaps stat
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preimages stat
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bloomBits stat
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beaconHeaders stat
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cliqueSnaps stat
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// Les statistic
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chtTrieNodes stat
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bloomTrieNodes stat
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// Meta- and unaccounted data
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metadata stat
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unaccounted stat
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// Totals
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total common.StorageSize
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)
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// Inspect key-value database first.
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for it.Next() {
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var (
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key = it.Key()
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size = common.StorageSize(len(key) + len(it.Value()))
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)
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total += size
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switch {
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case bytes.HasPrefix(key, headerPrefix) && len(key) == (len(headerPrefix)+8+common.HashLength):
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headers.Add(size)
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case bytes.HasPrefix(key, blockBodyPrefix) && len(key) == (len(blockBodyPrefix)+8+common.HashLength):
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bodies.Add(size)
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case bytes.HasPrefix(key, blockReceiptsPrefix) && len(key) == (len(blockReceiptsPrefix)+8+common.HashLength):
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receipts.Add(size)
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case bytes.HasPrefix(key, headerPrefix) && bytes.HasSuffix(key, headerTDSuffix):
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tds.Add(size)
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case bytes.HasPrefix(key, headerPrefix) && bytes.HasSuffix(key, headerHashSuffix):
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numHashPairings.Add(size)
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case bytes.HasPrefix(key, headerNumberPrefix) && len(key) == (len(headerNumberPrefix)+common.HashLength):
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hashNumPairings.Add(size)
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case len(key) == common.HashLength:
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tries.Add(size)
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case bytes.HasPrefix(key, CodePrefix) && len(key) == len(CodePrefix)+common.HashLength:
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codes.Add(size)
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case bytes.HasPrefix(key, txLookupPrefix) && len(key) == (len(txLookupPrefix)+common.HashLength):
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txLookups.Add(size)
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case bytes.HasPrefix(key, SnapshotAccountPrefix) && len(key) == (len(SnapshotAccountPrefix)+common.HashLength):
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accountSnaps.Add(size)
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case bytes.HasPrefix(key, SnapshotStoragePrefix) && len(key) == (len(SnapshotStoragePrefix)+2*common.HashLength):
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storageSnaps.Add(size)
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case bytes.HasPrefix(key, PreimagePrefix) && len(key) == (len(PreimagePrefix)+common.HashLength):
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preimages.Add(size)
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case bytes.HasPrefix(key, configPrefix) && len(key) == (len(configPrefix)+common.HashLength):
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metadata.Add(size)
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case bytes.HasPrefix(key, genesisPrefix) && len(key) == (len(genesisPrefix)+common.HashLength):
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metadata.Add(size)
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case bytes.HasPrefix(key, bloomBitsPrefix) && len(key) == (len(bloomBitsPrefix)+10+common.HashLength):
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bloomBits.Add(size)
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case bytes.HasPrefix(key, BloomBitsIndexPrefix):
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bloomBits.Add(size)
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case bytes.HasPrefix(key, skeletonHeaderPrefix) && len(key) == (len(skeletonHeaderPrefix)+8):
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beaconHeaders.Add(size)
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case bytes.HasPrefix(key, CliqueSnapshotPrefix) && len(key) == 7+common.HashLength:
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cliqueSnaps.Add(size)
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case bytes.HasPrefix(key, ChtTablePrefix) ||
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bytes.HasPrefix(key, ChtIndexTablePrefix) ||
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bytes.HasPrefix(key, ChtPrefix): // Canonical hash trie
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chtTrieNodes.Add(size)
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case bytes.HasPrefix(key, BloomTrieTablePrefix) ||
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bytes.HasPrefix(key, BloomTrieIndexPrefix) ||
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bytes.HasPrefix(key, BloomTriePrefix): // Bloomtrie sub
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bloomTrieNodes.Add(size)
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default:
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var accounted bool
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for _, meta := range [][]byte{
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databaseVersionKey, headHeaderKey, headBlockKey, headFastBlockKey, headFinalizedBlockKey,
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lastPivotKey, fastTrieProgressKey, snapshotDisabledKey, SnapshotRootKey, snapshotJournalKey,
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snapshotGeneratorKey, snapshotRecoveryKey, txIndexTailKey, fastTxLookupLimitKey,
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uncleanShutdownKey, badBlockKey, transitionStatusKey, skeletonSyncStatusKey,
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} {
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if bytes.Equal(key, meta) {
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metadata.Add(size)
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accounted = true
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break
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}
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}
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if !accounted {
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unaccounted.Add(size)
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}
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}
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count++
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if count%1000 == 0 && time.Since(logged) > 8*time.Second {
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log.Info("Inspecting database", "count", count, "elapsed", common.PrettyDuration(time.Since(start)))
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logged = time.Now()
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}
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}
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// Display the database statistic of key-value store.
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stats := [][]string{
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{"Key-Value store", "Headers", headers.Size(), headers.Count()},
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{"Key-Value store", "Bodies", bodies.Size(), bodies.Count()},
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{"Key-Value store", "Receipt lists", receipts.Size(), receipts.Count()},
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{"Key-Value store", "Difficulties", tds.Size(), tds.Count()},
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{"Key-Value store", "Block number->hash", numHashPairings.Size(), numHashPairings.Count()},
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{"Key-Value store", "Block hash->number", hashNumPairings.Size(), hashNumPairings.Count()},
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{"Key-Value store", "Transaction index", txLookups.Size(), txLookups.Count()},
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{"Key-Value store", "Bloombit index", bloomBits.Size(), bloomBits.Count()},
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{"Key-Value store", "Contract codes", codes.Size(), codes.Count()},
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{"Key-Value store", "Trie nodes", tries.Size(), tries.Count()},
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{"Key-Value store", "Trie preimages", preimages.Size(), preimages.Count()},
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{"Key-Value store", "Account snapshot", accountSnaps.Size(), accountSnaps.Count()},
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{"Key-Value store", "Storage snapshot", storageSnaps.Size(), storageSnaps.Count()},
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{"Key-Value store", "Beacon sync headers", beaconHeaders.Size(), beaconHeaders.Count()},
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{"Key-Value store", "Clique snapshots", cliqueSnaps.Size(), cliqueSnaps.Count()},
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{"Key-Value store", "Singleton metadata", metadata.Size(), metadata.Count()},
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{"Light client", "CHT trie nodes", chtTrieNodes.Size(), chtTrieNodes.Count()},
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{"Light client", "Bloom trie nodes", bloomTrieNodes.Size(), bloomTrieNodes.Count()},
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}
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// Inspect all registered append-only file store then.
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ancients, err := inspectFreezers(db)
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if err != nil {
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return err
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}
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for _, ancient := range ancients {
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for _, table := range ancient.sizes {
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stats = append(stats, []string{
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fmt.Sprintf("Ancient store (%s)", strings.Title(ancient.name)),
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strings.Title(table.name),
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table.size.String(),
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fmt.Sprintf("%d", ancient.count()),
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})
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}
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total += ancient.size()
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}
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table := tablewriter.NewWriter(os.Stdout)
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table.SetHeader([]string{"Database", "Category", "Size", "Items"})
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table.SetFooter([]string{"", "Total", total.String(), " "})
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table.AppendBulk(stats)
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table.Render()
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if unaccounted.size > 0 {
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utils.Logger().Error().
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Interface("size", unaccounted.size).
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Interface("count", unaccounted.count).
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Msg("Database contains unaccounted data")
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}
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return nil
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}
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