b858da709a
Summary: [start_time, end_time) is waht I'm following for the buckets and the whole time-range. Also cleaned up some code in db_ttl.* Not correcting the spacing/indenting convention for util/ldb_cmd.cc in this diff. Test Plan: python ldb_test.py, make ttl_test, Run mcrocksdb-backup tool, Run the ldb tool on 2 mcrocksdb production backups form sigmafio033.prn1 Reviewers: vamsi, haobo Reviewed By: vamsi Differential Revision: https://reviews.facebook.net/D11433
269 lines
7.4 KiB
C++
269 lines
7.4 KiB
C++
// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file. See the AUTHORS file for names of contributors.
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#include "utilities/ttl/db_ttl.h"
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#include "include/utilities/utility_db.h"
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#include "db/filename.h"
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#include "util/coding.h"
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#include "include/leveldb/env.h"
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#include "include/leveldb/iterator.h"
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namespace leveldb {
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// Open the db inside DBWithTTL because options needs pointer to its ttl
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DBWithTTL::DBWithTTL(const int32_t ttl,
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const Options& options,
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const std::string& dbname,
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Status& st,
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bool read_only)
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: ttl_(ttl) {
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assert(options.compaction_filter == nullptr);
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Options options_to_open = options;
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options_to_open.compaction_filter = this;
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if (read_only) {
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st = DB::OpenForReadOnly(options_to_open, dbname, &db_);
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} else {
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st = DB::Open(options_to_open, dbname, &db_);
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}
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}
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DBWithTTL::~DBWithTTL() {
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delete db_;
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}
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Status UtilityDB::OpenTtlDB(
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const Options& options,
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const std::string& dbname,
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DB** dbptr,
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int32_t ttl,
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bool read_only) {
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Status st;
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*dbptr = new DBWithTTL(ttl, options, dbname, st, read_only);
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if (!st.ok()) {
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delete dbptr;
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}
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return st;
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}
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// returns true(i.e. key-value to be deleted) if its TS has expired based on ttl
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bool DBWithTTL::Filter(
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int level,
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const Slice& key,
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const Slice& old_val,
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std::string* new_val,
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bool* value_changed) const {
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return IsStale(old_val, ttl_);
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}
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const char* DBWithTTL::Name() const {
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return "Delete By TTL";
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}
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// Gives back the current time
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Status DBWithTTL::GetCurrentTime(int32_t& curtime) {
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return Env::Default()->GetCurrentTime((int64_t*)&curtime);
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}
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// Appends the current timestamp to the string.
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// Returns false if could not get the current_time, true if append succeeds
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Status DBWithTTL::AppendTS(const Slice& val, std::string& val_with_ts) {
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val_with_ts.reserve(kTSLength + val.size());
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char ts_string[kTSLength];
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int32_t curtime;
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Status st = GetCurrentTime(curtime);
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if (!st.ok()) {
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return st;
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}
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EncodeFixed32(ts_string, curtime);
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val_with_ts.append(val.data(), val.size());
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val_with_ts.append(ts_string, kTSLength);
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return st;
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}
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// Returns corruption if the length of the string is lesser than timestamp, or
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// timestamp refers to a time lesser than ttl-feature release time
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Status DBWithTTL::SanityCheckTimestamp(const Slice& str) {
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if (str.size() < (unsigned)kTSLength) {
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return Status::Corruption("Error: value's length less than timestamp's\n");
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}
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// Checks that TS is not lesser than kMinTimestamp
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// Gaurds against corruption & normal database opened incorrectly in ttl mode
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int32_t timestamp_value =
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DecodeFixed32(str.data() + str.size() - kTSLength);
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if (timestamp_value < kMinTimestamp){
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return Status::Corruption("Error: Timestamp < ttl feature release time!\n");
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}
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return Status::OK();
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}
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// Checks if the string is stale or not according to TTl provided
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bool DBWithTTL::IsStale(const Slice& value, int32_t ttl) {
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if (ttl <= 0) { // Data is fresh if TTL is non-positive
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return false;
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}
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int32_t curtime;
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if (!GetCurrentTime(curtime).ok()) {
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return false; // Treat the data as fresh if could not get current time
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} else {
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int32_t timestamp_value =
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DecodeFixed32(value.data() + value.size() - kTSLength);
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if ((timestamp_value + ttl) < curtime) {
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return true; // Data is stale
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}
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}
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return false;
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}
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// Strips the TS from the end of the string
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Status DBWithTTL::StripTS(std::string* str) {
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Status st;
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// Erasing characters which hold the TS
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str->erase(str->length() - kTSLength, kTSLength);
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return st;
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}
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Status DBWithTTL::Put(
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const WriteOptions& o,
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const Slice& key,
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const Slice& val) {
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std::string value_with_ts;
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Status st = AppendTS(val, value_with_ts);
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if (!st.ok()) {
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return st;
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}
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return db_->Put(o, key, value_with_ts);
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}
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Status DBWithTTL::Get(const ReadOptions& options,
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const Slice& key,
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std::string* value) {
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Status st = db_->Get(options, key, value);
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if (!st.ok()) {
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return st;
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}
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st = SanityCheckTimestamp(*value);
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if (!st.ok()) {
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return st;
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}
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return StripTS(value);
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}
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std::vector<Status> DBWithTTL::MultiGet(const ReadOptions& options,
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const std::vector<Slice>& keys,
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std::vector<std::string>* values) {
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return std::vector<Status>(keys.size(),
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Status::NotSupported("MultiGet not\
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supported with TTL"));
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}
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Status DBWithTTL::Delete(const WriteOptions& wopts, const Slice& key) {
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return db_->Delete(wopts, key);
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}
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Status DBWithTTL::Merge(const WriteOptions& options,
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const Slice& key,
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const Slice& value) {
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return Status::NotSupported("Merge operation not supported.");
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}
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Status DBWithTTL::Write(const WriteOptions& opts, WriteBatch* updates) {
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class Handler : public WriteBatch::Handler {
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public:
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WriteBatch updates_ttl;
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Status batch_rewrite_status;
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virtual void Put(const Slice& key, const Slice& value) {
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std::string value_with_ts;
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Status st = AppendTS(value, value_with_ts);
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if (!st.ok()) {
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batch_rewrite_status = st;
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} else {
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updates_ttl.Put(key, value_with_ts);
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}
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}
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virtual void Merge(const Slice& key, const Slice& value) {
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// TTL doesn't support merge operation
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batch_rewrite_status = Status::NotSupported("TTL doesn't support Merge");
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}
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virtual void Delete(const Slice& key) {
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updates_ttl.Delete(key);
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}
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};
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Handler handler;
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updates->Iterate(&handler);
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if (!handler.batch_rewrite_status.ok()) {
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return handler.batch_rewrite_status;
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} else {
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return db_->Write(opts, &(handler.updates_ttl));
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}
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}
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Iterator* DBWithTTL::NewIterator(const ReadOptions& opts) {
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return new TtlIterator(db_->NewIterator(opts));
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}
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const Snapshot* DBWithTTL::GetSnapshot() {
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return db_->GetSnapshot();
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}
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void DBWithTTL::ReleaseSnapshot(const Snapshot* snapshot) {
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db_->ReleaseSnapshot(snapshot);
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}
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bool DBWithTTL::GetProperty(const Slice& property, std::string* value) {
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return db_->GetProperty(property, value);
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}
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void DBWithTTL::GetApproximateSizes(const Range* r, int n, uint64_t* sizes) {
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db_->GetApproximateSizes(r, n, sizes);
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}
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void DBWithTTL::CompactRange(const Slice* begin, const Slice* end) {
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db_->CompactRange(begin, end);
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}
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int DBWithTTL::NumberLevels() {
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return db_->NumberLevels();
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}
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int DBWithTTL::MaxMemCompactionLevel() {
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return db_->MaxMemCompactionLevel();
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}
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int DBWithTTL::Level0StopWriteTrigger() {
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return db_->Level0StopWriteTrigger();
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}
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Status DBWithTTL::Flush(const FlushOptions& fopts) {
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return db_->Flush(fopts);
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}
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Status DBWithTTL::DisableFileDeletions() {
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return db_->DisableFileDeletions();
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}
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Status DBWithTTL::EnableFileDeletions() {
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return db_->EnableFileDeletions();
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}
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Status DBWithTTL::GetLiveFiles(std::vector<std::string>& vec, uint64_t* mfs) {
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return db_->GetLiveFiles(vec, mfs);
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}
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SequenceNumber DBWithTTL::GetLatestSequenceNumber() {
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return db_->GetLatestSequenceNumber();
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}
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Status DBWithTTL::GetUpdatesSince(
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SequenceNumber seq_number,
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unique_ptr<TransactionLogIterator>* iter) {
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return db_->GetUpdatesSince(seq_number, iter);
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}
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void DBWithTTL::TEST_Destroy_DBWithTtl() {
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((DBImpl*) db_)->TEST_Destroy_DBImpl();
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}
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} // namespace leveldb
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