db_impl.cc 136.0 KB
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//  Copyright (c) 2011-present, Facebook, Inc.  All rights reserved.
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//  This source code is licensed under both the GPLv2 (found in the
//  COPYING file in the root directory) and Apache 2.0 License
//  (found in the LICENSE.Apache file in the root directory).
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//
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// Copyright (c) 2011 The LevelDB Authors. All rights reserved.
// Use of this source code is governed by a BSD-style license that can be
// found in the LICENSE file. See the AUTHORS file for names of contributors.
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#include "db/db_impl/db_impl.h"
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#include <stdint.h>
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#ifdef OS_SOLARIS
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#include <alloca.h>
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#endif
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#include <algorithm>
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#include <cstdio>
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#include <map>
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#include <set>
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#include <stdexcept>
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#include <string>
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#include <unordered_map>
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#include <unordered_set>
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#include <utility>
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#include <vector>
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#include "db/builder.h"
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#include "db/compaction/compaction_job.h"
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#include "db/db_info_dumper.h"
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#include "db/db_iter.h"
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#include "db/dbformat.h"
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#include "db/error_handler.h"
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#include "db/event_helpers.h"
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#include "db/external_sst_file_ingestion_job.h"
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#include "db/flush_job.h"
#include "db/forward_iterator.h"
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#include "db/in_memory_stats_history.h"
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#include "db/job_context.h"
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#include "db/log_reader.h"
#include "db/log_writer.h"
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#include "db/malloc_stats.h"
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#include "db/memtable.h"
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#include "db/memtable_list.h"
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#include "db/merge_context.h"
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#include "db/merge_helper.h"
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#include "db/range_tombstone_fragmenter.h"
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#include "db/table_cache.h"
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#include "db/table_properties_collector.h"
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#include "db/transaction_log_impl.h"
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#include "db/version_set.h"
#include "db/write_batch_internal.h"
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#include "db/write_callback.h"
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#include "file/file_util.h"
#include "file/filename.h"
#include "file/sst_file_manager_impl.h"
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#include "logging/auto_roll_logger.h"
#include "logging/log_buffer.h"
#include "logging/logging.h"
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#include "memtable/hash_linklist_rep.h"
#include "memtable/hash_skiplist_rep.h"
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#include "monitoring/iostats_context_imp.h"
#include "monitoring/perf_context_imp.h"
#include "monitoring/thread_status_updater.h"
#include "monitoring/thread_status_util.h"
#include "options/cf_options.h"
#include "options/options_helper.h"
#include "options/options_parser.h"
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#include "port/port.h"
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#include "rocksdb/cache.h"
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#include "rocksdb/compaction_filter.h"
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#include "rocksdb/convenience.h"
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#include "rocksdb/db.h"
#include "rocksdb/env.h"
#include "rocksdb/merge_operator.h"
#include "rocksdb/statistics.h"
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#include "rocksdb/stats_history.h"
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#include "rocksdb/status.h"
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#include "rocksdb/table.h"
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#include "rocksdb/write_buffer_manager.h"
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#include "table/block_based/block.h"
#include "table/block_based/block_based_table_factory.h"
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#include "table/get_context.h"
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#include "table/merging_iterator.h"
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#include "table/multiget_context.h"
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#include "table/table_builder.h"
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#include "table/two_level_iterator.h"
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#include "test_util/sync_point.h"
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#include "tools/sst_dump_tool_imp.h"
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#include "util/autovector.h"
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#include "util/build_version.h"
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#include "util/coding.h"
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#include "util/compression.h"
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#include "util/crc32c.h"
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#include "util/file_reader_writer.h"
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#include "util/mutexlock.h"
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#include "util/stop_watch.h"
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#include "util/string_util.h"
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namespace rocksdb {
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const std::string kDefaultColumnFamilyName("default");
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void DumpRocksDBBuildVersion(Logger* log);
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CompressionType GetCompressionFlush(
    const ImmutableCFOptions& ioptions,
    const MutableCFOptions& mutable_cf_options) {
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  // Compressing memtable flushes might not help unless the sequential load
  // optimization is used for leveled compaction. Otherwise the CPU and
  // latency overhead is not offset by saving much space.
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  if (ioptions.compaction_style == kCompactionStyleUniversal) {
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    if (mutable_cf_options.compaction_options_universal
            .compression_size_percent < 0) {
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      return mutable_cf_options.compression;
    } else {
      return kNoCompression;
    }
  } else if (!ioptions.compression_per_level.empty()) {
    // For leveled compress when min_level_to_compress != 0.
    return ioptions.compression_per_level[0];
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  } else {
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    return mutable_cf_options.compression;
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  }
}
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namespace {
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void DumpSupportInfo(Logger* logger) {
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  ROCKS_LOG_HEADER(logger, "Compression algorithms supported:");
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  for (auto& compression : OptionsHelper::compression_type_string_map) {
    if (compression.second != kNoCompression &&
        compression.second != kDisableCompressionOption) {
      ROCKS_LOG_HEADER(logger, "\t%s supported: %d", compression.first.c_str(),
                       CompressionTypeSupported(compression.second));
    }
  }
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  ROCKS_LOG_HEADER(logger, "Fast CRC32 supported: %s",
                   crc32c::IsFastCrc32Supported().c_str());
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}
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int64_t kDefaultLowPriThrottledRate = 2 * 1024 * 1024;
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}  // namespace
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DBImpl::DBImpl(const DBOptions& options, const std::string& dbname,
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               const bool seq_per_batch, const bool batch_per_txn)
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    : env_(options.env),
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      dbname_(dbname),
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      own_info_log_(options.info_log == nullptr),
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      initial_db_options_(SanitizeOptions(dbname, options)),
      immutable_db_options_(initial_db_options_),
      mutable_db_options_(initial_db_options_),
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      stats_(immutable_db_options_.statistics.get()),
      mutex_(stats_, env_, DB_MUTEX_WAIT_MICROS,
             immutable_db_options_.use_adaptive_mutex),
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      default_cf_handle_(nullptr),
      max_total_in_memory_state_(0),
      env_options_(BuildDBOptions(immutable_db_options_, mutable_db_options_)),
      env_options_for_compaction_(env_->OptimizeForCompactionTableWrite(
          env_options_, immutable_db_options_)),
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      seq_per_batch_(seq_per_batch),
      batch_per_txn_(batch_per_txn),
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      db_lock_(nullptr),
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      shutting_down_(false),
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      bg_cv_(&mutex_),
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      logfile_number_(0),
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      log_dir_synced_(false),
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      log_empty_(true),
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      log_sync_cv_(&mutex_),
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      total_log_size_(0),
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      is_snapshot_supported_(true),
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      write_buffer_manager_(immutable_db_options_.write_buffer_manager.get()),
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      write_thread_(immutable_db_options_),
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      nonmem_write_thread_(immutable_db_options_),
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      write_controller_(mutable_db_options_.delayed_write_rate),
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      // Use delayed_write_rate as a base line to determine the initial
      // low pri write rate limit. It may be adjusted later.
      low_pri_write_rate_limiter_(NewGenericRateLimiter(std::min(
          static_cast<int64_t>(mutable_db_options_.delayed_write_rate / 8),
          kDefaultLowPriThrottledRate))),
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      last_batch_group_size_(0),
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      unscheduled_flushes_(0),
      unscheduled_compactions_(0),
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      bg_bottom_compaction_scheduled_(0),
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      bg_compaction_scheduled_(0),
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      num_running_compactions_(0),
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      bg_flush_scheduled_(0),
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      num_running_flushes_(0),
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      bg_purge_scheduled_(0),
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      disable_delete_obsolete_files_(0),
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      pending_purge_obsolete_files_(0),
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      delete_obsolete_files_last_run_(env_->NowMicros()),
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      last_stats_dump_time_microsec_(0),
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      next_job_id_(1),
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      has_unpersisted_data_(false),
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      unable_to_release_oldest_log_(false),
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      num_running_ingest_file_(0),
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#ifndef ROCKSDB_LITE
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      wal_manager_(immutable_db_options_, env_options_, seq_per_batch),
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#endif  // ROCKSDB_LITE
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      event_logger_(immutable_db_options_.info_log.get()),
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      bg_work_paused_(0),
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      bg_compaction_paused_(0),
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      refitting_level_(false),
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      opened_successfully_(false),
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      two_write_queues_(options.two_write_queues),
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      manual_wal_flush_(options.manual_wal_flush),
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      // last_sequencee_ is always maintained by the main queue that also writes
      // to the memtable. When two_write_queues_ is disabled last seq in
      // memtable is the same as last seq published to the readers. When it is
      // enabled but seq_per_batch_ is disabled, last seq in memtable still
      // indicates last published seq since wal-only writes that go to the 2nd
      // queue do not consume a sequence number. Otherwise writes performed by
      // the 2nd queue could change what is visible to the readers. In this
      // cases, last_seq_same_as_publish_seq_==false, the 2nd queue maintains a
      // separate variable to indicate the last published sequence.
      last_seq_same_as_publish_seq_(
          !(seq_per_batch && options.two_write_queues)),
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      // Since seq_per_batch_ is currently set only by WritePreparedTxn which
      // requires a custom gc for compaction, we use that to set use_custom_gc_
      // as well.
      use_custom_gc_(seq_per_batch),
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      shutdown_initiated_(false),
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      own_sfm_(options.sst_file_manager == nullptr),
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      preserve_deletes_(options.preserve_deletes),
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      closed_(false),
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      error_handler_(this, immutable_db_options_, &mutex_),
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      atomic_flush_install_cv_(&mutex_) {
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  // !batch_per_trx_ implies seq_per_batch_ because it is only unset for
  // WriteUnprepared, which should use seq_per_batch_.
  assert(batch_per_txn_ || seq_per_batch_);
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  env_->GetAbsolutePath(dbname, &db_absolute_path_);
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  // Reserve ten files or so for other uses and give the rest to TableCache.
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  // Give a large number for setting of "infinite" open files.
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  const int table_cache_size = (mutable_db_options_.max_open_files == -1)
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                                   ? TableCache::kInfiniteCapacity
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                                   : mutable_db_options_.max_open_files - 10;
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  table_cache_ = NewLRUCache(table_cache_size,
                             immutable_db_options_.table_cache_numshardbits);
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  versions_.reset(new VersionSet(dbname_, &immutable_db_options_, env_options_,
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                                 table_cache_.get(), write_buffer_manager_,
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                                 &write_controller_));
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  column_family_memtables_.reset(
      new ColumnFamilyMemTablesImpl(versions_->GetColumnFamilySet()));
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  DumpRocksDBBuildVersion(immutable_db_options_.info_log.get());
  DumpDBFileSummary(immutable_db_options_, dbname_);
  immutable_db_options_.Dump(immutable_db_options_.info_log.get());
  mutable_db_options_.Dump(immutable_db_options_.info_log.get());
  DumpSupportInfo(immutable_db_options_.info_log.get());
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  // always open the DB with 0 here, which means if preserve_deletes_==true
  // we won't drop any deletion markers until SetPreserveDeletesSequenceNumber()
  // is called by client and this seqnum is advanced.
  preserve_deletes_seqnum_.store(0);
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}

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Status DBImpl::Resume() {
  ROCKS_LOG_INFO(immutable_db_options_.info_log, "Resuming DB");

  InstrumentedMutexLock db_mutex(&mutex_);

  if (!error_handler_.IsDBStopped() && !error_handler_.IsBGWorkStopped()) {
    // Nothing to do
    return Status::OK();
  }

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  if (error_handler_.IsRecoveryInProgress()) {
    // Don't allow a mix of manual and automatic recovery
    return Status::Busy();
  }

  mutex_.Unlock();
  Status s = error_handler_.RecoverFromBGError(true);
  mutex_.Lock();
  return s;
}

// This function implements the guts of recovery from a background error. It
// is eventually called for both manual as well as automatic recovery. It does
// the following -
// 1. Wait for currently scheduled background flush/compaction to exit, in
//    order to inadvertently causing an error and thinking recovery failed
// 2. Flush memtables if there's any data for all the CFs. This may result
//    another error, which will be saved by error_handler_ and reported later
//    as the recovery status
// 3. Find and delete any obsolete files
// 4. Schedule compactions if needed for all the CFs. This is needed as the
//    flush in the prior step might have been a no-op for some CFs, which
//    means a new super version wouldn't have been installed
Status DBImpl::ResumeImpl() {
  mutex_.AssertHeld();
  WaitForBackgroundWork();

  Status bg_error = error_handler_.GetBGError();
  Status s;
  if (shutdown_initiated_) {
    // Returning shutdown status to SFM during auto recovery will cause it
    // to abort the recovery and allow the shutdown to progress
    s = Status::ShutdownInProgress();
  }
  if (s.ok() && bg_error.severity() > Status::Severity::kHardError) {
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    ROCKS_LOG_INFO(
        immutable_db_options_.info_log,
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        "DB resume requested but failed due to Fatal/Unrecoverable error");
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    s = bg_error;
  }

  // We cannot guarantee consistency of the WAL. So force flush Memtables of
  // all the column families
  if (s.ok()) {
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    FlushOptions flush_opts;
    // We allow flush to stall write since we are trying to resume from error.
    flush_opts.allow_write_stall = true;
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    if (immutable_db_options_.atomic_flush) {
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      autovector<ColumnFamilyData*> cfds;
      SelectColumnFamiliesForAtomicFlush(&cfds);
      mutex_.Unlock();
      s = AtomicFlushMemTables(cfds, flush_opts, FlushReason::kErrorRecovery);
      mutex_.Lock();
    } else {
      for (auto cfd : *versions_->GetColumnFamilySet()) {
        if (cfd->IsDropped()) {
          continue;
        }
        cfd->Ref();
        mutex_.Unlock();
        s = FlushMemTable(cfd, flush_opts, FlushReason::kErrorRecovery);
        mutex_.Lock();
        cfd->Unref();
        if (!s.ok()) {
          break;
        }
      }
    }
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    if (!s.ok()) {
      ROCKS_LOG_INFO(immutable_db_options_.info_log,
                     "DB resume requested but failed due to Flush failure [%s]",
                     s.ToString().c_str());
    }
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  }

  JobContext job_context(0);
  FindObsoleteFiles(&job_context, true);
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  if (s.ok()) {
    s = error_handler_.ClearBGError();
  }
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  mutex_.Unlock();

  job_context.manifest_file_number = 1;
  if (job_context.HaveSomethingToDelete()) {
    PurgeObsoleteFiles(job_context);
  }
  job_context.Clean();

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  if (s.ok()) {
    ROCKS_LOG_INFO(immutable_db_options_.info_log, "Successfully resumed DB");
  }
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  mutex_.Lock();
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  // Check for shutdown again before scheduling further compactions,
  // since we released and re-acquired the lock above
  if (shutdown_initiated_) {
    s = Status::ShutdownInProgress();
  }
  if (s.ok()) {
    for (auto cfd : *versions_->GetColumnFamilySet()) {
      SchedulePendingCompaction(cfd);
    }
    MaybeScheduleFlushOrCompaction();
  }

  // Wake up any waiters - in this case, it could be the shutdown thread
  bg_cv_.SignalAll();
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  // No need to check BGError again. If something happened, event listener would
  // be notified and the operation causing it would have failed
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  return s;
}

void DBImpl::WaitForBackgroundWork() {
  // Wait for background work to finish
  while (bg_bottom_compaction_scheduled_ || bg_compaction_scheduled_ ||
         bg_flush_scheduled_) {
    bg_cv_.Wait();
  }
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}

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// Will lock the mutex_,  will wait for completion if wait is true
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void DBImpl::CancelAllBackgroundWork(bool wait) {
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  ROCKS_LOG_INFO(immutable_db_options_.info_log,
                 "Shutdown: canceling all background work");
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  if (thread_dump_stats_ != nullptr) {
    thread_dump_stats_->cancel();
    thread_dump_stats_.reset();
  }
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  if (thread_persist_stats_ != nullptr) {
    thread_persist_stats_->cancel();
    thread_persist_stats_.reset();
  }
  InstrumentedMutexLock l(&mutex_);
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  if (!shutting_down_.load(std::memory_order_acquire) &&
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      has_unpersisted_data_.load(std::memory_order_relaxed) &&
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      !mutable_db_options_.avoid_flush_during_shutdown) {
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    if (immutable_db_options_.atomic_flush) {
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      autovector<ColumnFamilyData*> cfds;
      SelectColumnFamiliesForAtomicFlush(&cfds);
      mutex_.Unlock();
      AtomicFlushMemTables(cfds, FlushOptions(), FlushReason::kShutDown);
      mutex_.Lock();
    } else {
      for (auto cfd : *versions_->GetColumnFamilySet()) {
        if (!cfd->IsDropped() && cfd->initialized() && !cfd->mem()->IsEmpty()) {
          cfd->Ref();
          mutex_.Unlock();
          FlushMemTable(cfd, FlushOptions(), FlushReason::kShutDown);
          mutex_.Lock();
          cfd->Unref();
        }
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      }
    }
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    versions_->GetColumnFamilySet()->FreeDeadColumnFamilies();
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  }
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  shutting_down_.store(true, std::memory_order_release);
  bg_cv_.SignalAll();
  if (!wait) {
    return;
  }
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  WaitForBackgroundWork();
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}

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Status DBImpl::CloseHelper() {
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  // Guarantee that there is no background error recovery in progress before
  // continuing with the shutdown
  mutex_.Lock();
  shutdown_initiated_ = true;
  error_handler_.CancelErrorRecovery();
  while (error_handler_.IsRecoveryInProgress()) {
    bg_cv_.Wait();
  }
  mutex_.Unlock();

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  // CancelAllBackgroundWork called with false means we just set the shutdown
  // marker. After this we do a variant of the waiting and unschedule work
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  // (to consider: moving all the waiting into CancelAllBackgroundWork(true))
  CancelAllBackgroundWork(false);
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  int bottom_compactions_unscheduled =
      env_->UnSchedule(this, Env::Priority::BOTTOM);
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  int compactions_unscheduled = env_->UnSchedule(this, Env::Priority::LOW);
  int flushes_unscheduled = env_->UnSchedule(this, Env::Priority::HIGH);
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  Status ret;
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  mutex_.Lock();
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  bg_bottom_compaction_scheduled_ -= bottom_compactions_unscheduled;
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  bg_compaction_scheduled_ -= compactions_unscheduled;
  bg_flush_scheduled_ -= flushes_unscheduled;

  // Wait for background work to finish
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  while (bg_bottom_compaction_scheduled_ || bg_compaction_scheduled_ ||
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         bg_flush_scheduled_ || bg_purge_scheduled_ ||
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         pending_purge_obsolete_files_ ||
         error_handler_.IsRecoveryInProgress()) {
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    TEST_SYNC_POINT("DBImpl::~DBImpl:WaitJob");
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    bg_cv_.Wait();
  }
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  TEST_SYNC_POINT_CALLBACK("DBImpl::CloseHelper:PendingPurgeFinished",
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                           &files_grabbed_for_purge_);
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  EraseThreadStatusDbInfo();
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  flush_scheduler_.Clear();

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  while (!flush_queue_.empty()) {
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    const FlushRequest& flush_req = PopFirstFromFlushQueue();
    for (const auto& iter : flush_req) {
      ColumnFamilyData* cfd = iter.first;
      if (cfd->Unref()) {
        delete cfd;
      }
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    }
  }
  while (!compaction_queue_.empty()) {
    auto cfd = PopFirstFromCompactionQueue();
    if (cfd->Unref()) {
      delete cfd;
    }
  }

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  if (default_cf_handle_ != nullptr) {
    // we need to delete handle outside of lock because it does its own locking
    mutex_.Unlock();
    delete default_cf_handle_;
    mutex_.Lock();
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  }

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  // Clean up obsolete files due to SuperVersion release.
  // (1) Need to delete to obsolete files before closing because RepairDB()
  // scans all existing files in the file system and builds manifest file.
  // Keeping obsolete files confuses the repair process.
  // (2) Need to check if we Open()/Recover() the DB successfully before
  // deleting because if VersionSet recover fails (may be due to corrupted
  // manifest file), it is not able to identify live files correctly. As a
  // result, all "live" files can get deleted by accident. However, corrupted
  // manifest is recoverable by RepairDB().
  if (opened_successfully_) {
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    JobContext job_context(next_job_id_.fetch_add(1));
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    FindObsoleteFiles(&job_context, true);
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    mutex_.Unlock();
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    // manifest number starting from 2
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    job_context.manifest_file_number = 1;
    if (job_context.HaveSomethingToDelete()) {
      PurgeObsoleteFiles(job_context);
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    }
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    job_context.Clean();
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    mutex_.Lock();
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  }

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  for (auto l : logs_to_free_) {
    delete l;
  }
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  for (auto& log : logs_) {
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    uint64_t log_number = log.writer->get_log_number();
    Status s = log.ClearWriter();
    if (!s.ok()) {
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      ROCKS_LOG_WARN(
          immutable_db_options_.info_log,
          "Unable to Sync WAL file %s with error -- %s",
          LogFileName(immutable_db_options_.wal_dir, log_number).c_str(),
          s.ToString().c_str());
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      // Retain the first error
      if (ret.ok()) {
        ret = s;
      }
    }
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  }
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  logs_.clear();
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  // Table cache may have table handles holding blocks from the block cache.
  // We need to release them before the block cache is destroyed. The block
  // cache may be destroyed inside versions_.reset(), when column family data
  // list is destroyed, so leaving handles in table cache after
  // versions_.reset() may cause issues.
  // Here we clean all unreferenced handles in table cache.
  // Now we assume all user queries have finished, so only version set itself
  // can possibly hold the blocks from block cache. After releasing unreferenced
  // handles here, only handles held by version set left and inside
  // versions_.reset(), we will release them. There, we need to make sure every
  // time a handle is released, we erase it from the cache too. By doing that,
  // we can guarantee that after versions_.reset(), table cache is empty
  // so the cache can be safely destroyed.
  table_cache_->EraseUnRefEntries();

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  for (auto& txn_entry : recovered_transactions_) {
    delete txn_entry.second;
  }

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  // versions need to be destroyed before table_cache since it can hold
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  // references to table_cache.
  versions_.reset();
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  mutex_.Unlock();
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  if (db_lock_ != nullptr) {
    env_->UnlockFile(db_lock_);
  }
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  ROCKS_LOG_INFO(immutable_db_options_.info_log, "Shutdown complete");
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  LogFlush(immutable_db_options_.info_log);
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#ifndef ROCKSDB_LITE
  // If the sst_file_manager was allocated by us during DB::Open(), ccall
  // Close() on it before closing the info_log. Otherwise, background thread
  // in SstFileManagerImpl might try to log something
  if (immutable_db_options_.sst_file_manager && own_sfm_) {
    auto sfm = static_cast<SstFileManagerImpl*>(
        immutable_db_options_.sst_file_manager.get());
    sfm->Close();
  }
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#endif  // ROCKSDB_LITE
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  if (immutable_db_options_.info_log && own_info_log_) {
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    Status s = immutable_db_options_.info_log->Close();
    if (ret.ok()) {
      ret = s;
    }
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  }
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  if (ret.IsAborted()) {
    // Reserve IsAborted() error for those where users didn't release
    // certain resource and they can release them and come back and
    // retry. In this case, we wrap this exception to something else.
    return Status::Incomplete(ret.ToString());
  }
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  return ret;
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}

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Status DBImpl::CloseImpl() { return CloseHelper(); }
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DBImpl::~DBImpl() {
  if (!closed_) {
    closed_ = true;
    CloseHelper();
  }
}
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void DBImpl::MaybeIgnoreError(Status* s) const {
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  if (s->ok() || immutable_db_options_.paranoid_checks) {
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    // No change needed
  } else {
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    ROCKS_LOG_WARN(immutable_db_options_.info_log, "Ignoring error %s",
                   s->ToString().c_str());
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    *s = Status::OK();
  }
}

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const Status DBImpl::CreateArchivalDirectory() {
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  if (immutable_db_options_.wal_ttl_seconds > 0 ||
      immutable_db_options_.wal_size_limit_mb > 0) {
    std::string archivalPath = ArchivalDirectory(immutable_db_options_.wal_dir);
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    return env_->CreateDirIfMissing(archivalPath);
  }
  return Status::OK();
}

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void DBImpl::PrintStatistics() {
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  auto dbstats = immutable_db_options_.statistics.get();
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  if (dbstats) {
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    ROCKS_LOG_INFO(immutable_db_options_.info_log, "STATISTICS:\n %s",
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                   dbstats->ToString().c_str());
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  }
}

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void DBImpl::StartTimedTasks() {
  unsigned int stats_dump_period_sec = 0;
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  unsigned int stats_persist_period_sec = 0;
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  {
    InstrumentedMutexLock l(&mutex_);
    stats_dump_period_sec = mutable_db_options_.stats_dump_period_sec;
    if (stats_dump_period_sec > 0) {
      if (!thread_dump_stats_) {
        thread_dump_stats_.reset(new rocksdb::RepeatableThread(
            [this]() { DBImpl::DumpStats(); }, "dump_st", env_,
            stats_dump_period_sec * 1000000));
      }
    }
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    stats_persist_period_sec = mutable_db_options_.stats_persist_period_sec;
    if (stats_persist_period_sec > 0) {
      if (!thread_persist_stats_) {
        thread_persist_stats_.reset(new rocksdb::RepeatableThread(
            [this]() { DBImpl::PersistStats(); }, "pst_st", env_,
            stats_persist_period_sec * 1000000));
      }
    }
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  }
}
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// esitmate the total size of stats_history_
size_t DBImpl::EstiamteStatsHistorySize() const {
  size_t size_total =
      sizeof(std::map<uint64_t, std::map<std::string, uint64_t>>);
  if (stats_history_.size() == 0) return size_total;
  size_t size_per_slice =
      sizeof(uint64_t) + sizeof(std::map<std::string, uint64_t>);
  // non-empty map, stats_history_.begin() guaranteed to exist
  std::map<std::string, uint64_t> sample_slice(stats_history_.begin()->second);
  for (const auto& pairs : sample_slice) {
    size_per_slice +=
        pairs.first.capacity() + sizeof(pairs.first) + sizeof(pairs.second);
  }
  size_total = size_per_slice * stats_history_.size();
  return size_total;
}

void DBImpl::PersistStats() {
  TEST_SYNC_POINT("DBImpl::PersistStats:Entry");
#ifndef ROCKSDB_LITE
  if (shutdown_initiated_) {
    return;
  }
  uint64_t now_micros = env_->NowMicros();
  Statistics* statistics = immutable_db_options_.statistics.get();
  if (!statistics) {
    return;
  }
  size_t stats_history_size_limit = 0;
  {
    InstrumentedMutexLock l(&mutex_);
    stats_history_size_limit = mutable_db_options_.stats_history_buffer_size;
  }

  // TODO(Zhongyi): also persist immutable_db_options_.statistics
  {
    std::map<std::string, uint64_t> stats_map;
    if (!statistics->getTickerMap(&stats_map)) {
      return;
    }
    InstrumentedMutexLock l(&stats_history_mutex_);
    // calculate the delta from last time
    if (stats_slice_initialized_) {
      std::map<std::string, uint64_t> stats_delta;
      for (const auto& stat : stats_map) {
        if (stats_slice_.find(stat.first) != stats_slice_.end()) {
          stats_delta[stat.first] = stat.second - stats_slice_[stat.first];
        }
      }
      stats_history_[now_micros] = stats_delta;
    }
    stats_slice_initialized_ = true;
    std::swap(stats_slice_, stats_map);
    TEST_SYNC_POINT("DBImpl::PersistStats:StatsCopied");

    // delete older stats snapshots to control memory consumption
    bool purge_needed = EstiamteStatsHistorySize() > stats_history_size_limit;
    while (purge_needed && !stats_history_.empty()) {
      stats_history_.erase(stats_history_.begin());
      purge_needed = EstiamteStatsHistorySize() > stats_history_size_limit;
    }
  }
  // TODO: persist stats to disk
#endif  // !ROCKSDB_LITE
}

bool DBImpl::FindStatsByTime(uint64_t start_time, uint64_t end_time,
                             uint64_t* new_time,
                             std::map<std::string, uint64_t>* stats_map) {
  assert(new_time);
  assert(stats_map);
  if (!new_time || !stats_map) return false;
  // lock when search for start_time
  {
    InstrumentedMutexLock l(&stats_history_mutex_);
    auto it = stats_history_.lower_bound(start_time);
    if (it != stats_history_.end() && it->first < end_time) {
      // make a copy for timestamp and stats_map
      *new_time = it->first;
      *stats_map = it->second;
      return true;
    } else {
      return false;
    }
  }
}

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Status DBImpl::GetStatsHistory(
    uint64_t start_time, uint64_t end_time,
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    std::unique_ptr<StatsHistoryIterator>* stats_iterator) {
  if (!stats_iterator) {
    return Status::InvalidArgument("stats_iterator not preallocated.");
  }
  stats_iterator->reset(
      new InMemoryStatsHistoryIterator(start_time, end_time, this));
  return (*stats_iterator)->status();
}

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void DBImpl::DumpStats() {
  TEST_SYNC_POINT("DBImpl::DumpStats:1");
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#ifndef ROCKSDB_LITE
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  const DBPropertyInfo* cf_property_info =
      GetPropertyInfo(DB::Properties::kCFStats);
  assert(cf_property_info != nullptr);
  const DBPropertyInfo* db_property_info =
      GetPropertyInfo(DB::Properties::kDBStats);
  assert(db_property_info != nullptr);

  std::string stats;
  if (shutdown_initiated_) {
    return;
  }
  {
    InstrumentedMutexLock l(&mutex_);
    default_cf_internal_stats_->GetStringProperty(
        *db_property_info, DB::Properties::kDBStats, &stats);
    for (auto cfd : *versions_->GetColumnFamilySet()) {
      if (cfd->initialized()) {
        cfd->internal_stats()->GetStringProperty(
            *cf_property_info, DB::Properties::kCFStatsNoFileHistogram, &stats);
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      }
    }
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    for (auto cfd : *versions_->GetColumnFamilySet()) {
      if (cfd->initialized()) {
        cfd->internal_stats()->GetStringProperty(
            *cf_property_info, DB::Properties::kCFFileHistogram, &stats);
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      }
    }
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  }
  TEST_SYNC_POINT("DBImpl::DumpStats:2");
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  ROCKS_LOG_INFO(immutable_db_options_.info_log,
782
                 "------- DUMPING STATS -------");
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  ROCKS_LOG_INFO(immutable_db_options_.info_log, "%s", stats.c_str());
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  if (immutable_db_options_.dump_malloc_stats) {
    stats.clear();
    DumpMallocStats(&stats);
    if (!stats.empty()) {
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      ROCKS_LOG_INFO(immutable_db_options_.info_log,
789
                     "------- Malloc STATS -------");
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      ROCKS_LOG_INFO(immutable_db_options_.info_log, "%s", stats.c_str());
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    }
  }
793
#endif  // !ROCKSDB_LITE
794

795
  PrintStatistics();
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}

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void DBImpl::ScheduleBgLogWriterClose(JobContext* job_context) {
  if (!job_context->logs_to_free.empty()) {
    for (auto l : job_context->logs_to_free) {
      AddToLogsToFreeQueue(l);
    }
    job_context->logs_to_free.clear();
    SchedulePurge();
  }
}

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Directory* DBImpl::GetDataDir(ColumnFamilyData* cfd, size_t path_id) const {
  assert(cfd);
  Directory* ret_dir = cfd->GetDataDir(path_id);
  if (ret_dir == nullptr) {
    return directories_.GetDataDir(path_id);
  }
  return ret_dir;
}

Directory* DBImpl::Directories::GetDataDir(size_t path_id) const {
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  assert(path_id < data_dirs_.size());
  Directory* ret_dir = data_dirs_[path_id].get();
  if (ret_dir == nullptr) {
    // Should use db_dir_
    return db_dir_.get();
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  }
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  return ret_dir;
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}

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Status DBImpl::SetOptions(
    ColumnFamilyHandle* column_family,
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    const std::unordered_map<std::string, std::string>& options_map) {
#ifdef ROCKSDB_LITE
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  (void)column_family;
  (void)options_map;
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  return Status::NotSupported("Not supported in ROCKSDB LITE");
#else
  auto* cfd = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family)->cfd();
  if (options_map.empty()) {
    ROCKS_LOG_WARN(immutable_db_options_.info_log,
                   "SetOptions() on column family [%s], empty input",
                   cfd->GetName().c_str());
    return Status::InvalidArgument("empty input");
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  }

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  MutableCFOptions new_options;
  Status s;
  Status persist_options_status;
846
  SuperVersionContext sv_context(/* create_superversion */ true);
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  {
848
    auto db_options = GetDBOptions();
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    InstrumentedMutexLock l(&mutex_);
850
    s = cfd->SetOptions(db_options, options_map);
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    if (s.ok()) {
      new_options = *cfd->GetLatestMutableCFOptions();
      // Append new version to recompute compaction score.
      VersionEdit dummy_edit;
      versions_->LogAndApply(cfd, new_options, &dummy_edit, &mutex_,
                             directories_.GetDbDir());
      // Trigger possible flush/compactions. This has to be before we persist
      // options to file, otherwise there will be a deadlock with writer
      // thread.
860
      InstallSuperVersionAndScheduleWork(cfd, &sv_context, new_options);
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      persist_options_status = WriteOptionsFile(
          false /*need_mutex_lock*/, true /*need_enter_write_thread*/);
864
      bg_cv_.SignalAll();
865 866
    }
  }
867
  sv_context.Clean();
868

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  ROCKS_LOG_INFO(
      immutable_db_options_.info_log,
      "SetOptions() on column family [%s], inputs:", cfd->GetName().c_str());
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  for (const auto& o : options_map) {
    ROCKS_LOG_INFO(immutable_db_options_.info_log, "%s: %s\n", o.first.c_str(),
                   o.second.c_str());
875
  }
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  if (s.ok()) {
    ROCKS_LOG_INFO(immutable_db_options_.info_log,
                   "[%s] SetOptions() succeeded", cfd->GetName().c_str());
    new_options.Dump(immutable_db_options_.info_log.get());
    if (!persist_options_status.ok()) {
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      s = persist_options_status;
882
    }
883
  } else {
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    ROCKS_LOG_WARN(immutable_db_options_.info_log, "[%s] SetOptions() failed",
                   cfd->GetName().c_str());
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  }
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  LogFlush(immutable_db_options_.info_log);
  return s;
#endif  // ROCKSDB_LITE
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}

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Status DBImpl::SetDBOptions(
    const std::unordered_map<std::string, std::string>& options_map) {
#ifdef ROCKSDB_LITE
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  (void)options_map;
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  return Status::NotSupported("Not supported in ROCKSDB LITE");
#else
  if (options_map.empty()) {
    ROCKS_LOG_WARN(immutable_db_options_.info_log,
                   "SetDBOptions(), empty input.");
    return Status::InvalidArgument("empty input");
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  }
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  MutableDBOptions new_options;
  Status s;
  Status persist_options_status;
907
  bool wal_changed = false;
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  WriteContext write_context;
  {
    InstrumentedMutexLock l(&mutex_);
    s = GetMutableDBOptionsFromStrings(mutable_db_options_, options_map,
                                       &new_options);
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    if (new_options.bytes_per_sync == 0) {
      new_options.bytes_per_sync = 1024 * 1024;
    }
    DBOptions new_db_options =
        BuildDBOptions(immutable_db_options_, new_options);
    if (s.ok()) {
      s = ValidateOptions(new_db_options);
    }
    if (s.ok()) {
      for (auto c : *versions_->GetColumnFamilySet()) {
        if (!c->IsDropped()) {
          auto cf_options = c->GetLatestCFOptions();
          s = ColumnFamilyData::ValidateOptions(new_db_options, cf_options);
          if (!s.ok()) {
            break;
          }
        }
      }
    }
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    if (s.ok()) {
      if (new_options.max_background_compactions >
          mutable_db_options_.max_background_compactions) {
        env_->IncBackgroundThreadsIfNeeded(
            new_options.max_background_compactions, Env::Priority::LOW);
        MaybeScheduleFlushOrCompaction();
      }
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      if (new_options.stats_dump_period_sec !=
          mutable_db_options_.stats_dump_period_sec) {
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        if (thread_dump_stats_) {
          mutex_.Unlock();
          thread_dump_stats_->cancel();
          mutex_.Lock();
        }
        if (new_options.stats_dump_period_sec > 0) {
          thread_dump_stats_.reset(new rocksdb::RepeatableThread(
              [this]() { DBImpl::DumpStats(); }, "dump_st", env_,
              new_options.stats_dump_period_sec * 1000000));
        } else {
          thread_dump_stats_.reset();
        }
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      }
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      if (new_options.stats_persist_period_sec !=
          mutable_db_options_.stats_persist_period_sec) {
        if (thread_persist_stats_) {
          mutex_.Unlock();
          thread_persist_stats_->cancel();
          mutex_.Lock();
        }
        if (new_options.stats_persist_period_sec > 0) {
          thread_persist_stats_.reset(new rocksdb::RepeatableThread(
              [this]() { DBImpl::PersistStats(); }, "pst_st", env_,
              new_options.stats_persist_period_sec * 1000000));
        } else {
          thread_persist_stats_.reset();
        }
      }
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      write_controller_.set_max_delayed_write_rate(
          new_options.delayed_write_rate);
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      table_cache_.get()->SetCapacity(new_options.max_open_files == -1
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                                          ? TableCache::kInfiniteCapacity
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                                          : new_options.max_open_files - 10);
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      wal_changed = mutable_db_options_.wal_bytes_per_sync !=
                    new_options.wal_bytes_per_sync;
976
      mutable_db_options_ = new_options;
977
      env_options_for_compaction_ = EnvOptions(new_db_options);
978
      env_options_for_compaction_ = env_->OptimizeForCompactionTableWrite(
979
          env_options_for_compaction_, immutable_db_options_);
980
      versions_->ChangeEnvOptions(mutable_db_options_);
981
      //TODO(xiez): clarify why apply optimize for read to write options
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      env_options_for_compaction_ = env_->OptimizeForCompactionTableRead(
          env_options_for_compaction_, immutable_db_options_);
      env_options_for_compaction_.compaction_readahead_size =
          mutable_db_options_.compaction_readahead_size;
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      WriteThread::Writer w;
987
      write_thread_.EnterUnbatched(&w, &mutex_);
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      if (total_log_size_ > GetMaxTotalWalSize() || wal_changed) {
        Status purge_wal_status = SwitchWAL(&write_context);
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        if (!purge_wal_status.ok()) {
          ROCKS_LOG_WARN(immutable_db_options_.info_log,
                         "Unable to purge WAL files in SetDBOptions() -- %s",
                         purge_wal_status.ToString().c_str());
        }
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      }
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      persist_options_status = WriteOptionsFile(
          false /*need_mutex_lock*/, false /*need_enter_write_thread*/);
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      write_thread_.ExitUnbatched(&w);
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    }
  }
1001
  ROCKS_LOG_INFO(immutable_db_options_.info_log, "SetDBOptions(), inputs:");
1002
  for (const auto& o : options_map) {
1003 1004
    ROCKS_LOG_INFO(immutable_db_options_.info_log, "%s: %s\n", o.first.c_str(),
                   o.second.c_str());
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  }
  if (s.ok()) {
1007
    ROCKS_LOG_INFO(immutable_db_options_.info_log, "SetDBOptions() succeeded");
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    new_options.Dump(immutable_db_options_.info_log.get());
    if (!persist_options_status.ok()) {
      if (immutable_db_options_.fail_if_options_file_error) {
        s = Status::IOError(
            "SetDBOptions() succeeded, but unable to persist options",
            persist_options_status.ToString());
      }
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      ROCKS_LOG_WARN(immutable_db_options_.info_log,
                     "Unable to persist options in SetDBOptions() -- %s",
                     persist_options_status.ToString().c_str());
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    }
  } else {
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    ROCKS_LOG_WARN(immutable_db_options_.info_log, "SetDBOptions failed");
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  }
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  LogFlush(immutable_db_options_.info_log);
1023
  return s;
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#endif  // ROCKSDB_LITE
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}

1027
// return the same level if it cannot be moved
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int DBImpl::FindMinimumEmptyLevelFitting(
    ColumnFamilyData* cfd, const MutableCFOptions& /*mutable_cf_options*/,
    int level) {
1031
  mutex_.AssertHeld();
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  const auto* vstorage = cfd->current()->storage_info();
1033
  int minimum_level = level;
1034
  for (int i = level - 1; i > 0; --i) {
1035
    // stop if level i is not empty
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    if (vstorage->NumLevelFiles(i) > 0) break;
1037
    // stop if level i is too small (cannot fit the level files)
1038
    if (vstorage->MaxBytesForLevel(i) < vstorage->NumLevelBytes(level)) {
1039 1040
      break;
    }
1041 1042 1043 1044 1045 1046

    minimum_level = i;
  }
  return minimum_level;
}

1047
Status DBImpl::FlushWAL(bool sync) {
1048
  if (manual_wal_flush_) {
1049 1050 1051 1052 1053 1054 1055
    Status s;
    {
      // We need to lock log_write_mutex_ since logs_ might change concurrently
      InstrumentedMutexLock wl(&log_write_mutex_);
      log::Writer* cur_log_writer = logs_.back().writer;
      s = cur_log_writer->WriteBuffer();
    }
1056 1057 1058
    if (!s.ok()) {
      ROCKS_LOG_ERROR(immutable_db_options_.info_log, "WAL flush error %s",
                      s.ToString().c_str());
1059 1060 1061 1062 1063
      // In case there is a fs error we should set it globally to prevent the
      // future writes
      WriteStatusCheck(s);
      // whether sync or not, we should abort the rest of function upon error
      return s;
1064 1065 1066 1067 1068 1069
    }
    if (!sync) {
      ROCKS_LOG_DEBUG(immutable_db_options_.info_log, "FlushWAL sync=false");
      return s;
    }
  }
1070 1071 1072
  if (!sync) {
    return Status::OK();
  }
1073 1074 1075 1076 1077
  // sync = true
  ROCKS_LOG_DEBUG(immutable_db_options_.info_log, "FlushWAL sync=true");
  return SyncWAL();
}

1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098
Status DBImpl::SyncWAL() {
  autovector<log::Writer*, 1> logs_to_sync;
  bool need_log_dir_sync;
  uint64_t current_log_number;

  {
    InstrumentedMutexLock l(&mutex_);
    assert(!logs_.empty());

    // This SyncWAL() call only cares about logs up to this number.
    current_log_number = logfile_number_;

    while (logs_.front().number <= current_log_number &&
           logs_.front().getting_synced) {
      log_sync_cv_.Wait();
    }
    // First check that logs are safe to sync in background.
    for (auto it = logs_.begin();
         it != logs_.end() && it->number <= current_log_number; ++it) {
      if (!it->writer->file()->writable_file()->IsSyncThreadSafe()) {
        return Status::NotSupported(
1099 1100 1101 1102
            "SyncWAL() is not supported for this implementation of WAL file",
            immutable_db_options_.allow_mmap_writes
                ? "try setting Options::allow_mmap_writes to false"
                : Slice());
1103 1104 1105 1106 1107
      }
    }
    for (auto it = logs_.begin();
         it != logs_.end() && it->number <= current_log_number; ++it) {
      auto& log = *it;
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      assert(!log.getting_synced);
      log.getting_synced = true;
      logs_to_sync.push_back(log.writer);
    }
1112

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    need_log_dir_sync = !log_dir_synced_;
1114 1115
  }

1116
  TEST_SYNC_POINT("DBWALTest::SyncWALNotWaitWrite:1");
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1117 1118 1119 1120 1121 1122 1123 1124 1125 1126
  RecordTick(stats_, WAL_FILE_SYNCED);
  Status status;
  for (log::Writer* log : logs_to_sync) {
    status = log->file()->SyncWithoutFlush(immutable_db_options_.use_fsync);
    if (!status.ok()) {
      break;
    }
  }
  if (status.ok() && need_log_dir_sync) {
    status = directories_.GetWalDir()->Fsync();
1127
  }
1128
  TEST_SYNC_POINT("DBWALTest::SyncWALNotWaitWrite:2");
1129

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  TEST_SYNC_POINT("DBImpl::SyncWAL:BeforeMarkLogsSynced:1");
  {
    InstrumentedMutexLock l(&mutex_);
    MarkLogsSynced(current_log_number, need_log_dir_sync, status);
  }
  TEST_SYNC_POINT("DBImpl::SyncWAL:BeforeMarkLogsSynced:2");
1136

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  return status;
1138 1139
}

1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158
Status DBImpl::LockWAL() {
  log_write_mutex_.Lock();
  auto cur_log_writer = logs_.back().writer;
  auto status = cur_log_writer->WriteBuffer();
  if (!status.ok()) {
    ROCKS_LOG_ERROR(immutable_db_options_.info_log, "WAL flush error %s",
                    status.ToString().c_str());
    // In case there is a fs error we should set it globally to prevent the
    // future writes
    WriteStatusCheck(status);
  }
  return status;
}

Status DBImpl::UnlockWAL() {
  log_write_mutex_.Unlock();
  return Status::OK();
}

1159 1160
void DBImpl::MarkLogsSynced(uint64_t up_to, bool synced_dir,
                            const Status& status) {
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1161
  mutex_.AssertHeld();
1162
  if (synced_dir && logfile_number_ == up_to && status.ok()) {
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    log_dir_synced_ = true;
  }
  for (auto it = logs_.begin(); it != logs_.end() && it->number <= up_to;) {
    auto& log = *it;
    assert(log.getting_synced);
    if (status.ok() && logs_.size() > 1) {
      logs_to_free_.push_back(log.ReleaseWriter());
1170 1171
      // To modify logs_ both mutex_ and log_write_mutex_ must be held
      InstrumentedMutexLock l(&log_write_mutex_);
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1172 1173 1174 1175 1176 1177 1178 1179 1180
      it = logs_.erase(it);
    } else {
      log.getting_synced = false;
      ++it;
    }
  }
  assert(!status.ok() || logs_.empty() || logs_[0].number > up_to ||
         (logs_.size() == 1 && !logs_[0].getting_synced));
  log_sync_cv_.SignalAll();
1181 1182
}

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SequenceNumber DBImpl::GetLatestSequenceNumber() const {
  return versions_->LastSequence();
1185 1186
}

1187 1188
void DBImpl::SetLastPublishedSequence(SequenceNumber seq) {
  versions_->SetLastPublishedSequence(seq);
1189 1190
}

1191 1192 1193 1194 1195 1196 1197 1198 1199
bool DBImpl::SetPreserveDeletesSequenceNumber(SequenceNumber seqnum) {
  if (seqnum > preserve_deletes_seqnum_.load()) {
    preserve_deletes_seqnum_.store(seqnum);
    return true;
  } else {
    return false;
  }
}

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InternalIterator* DBImpl::NewInternalIterator(
1201
    Arena* arena, RangeDelAggregator* range_del_agg, SequenceNumber sequence,
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    ColumnFamilyHandle* column_family) {
  ColumnFamilyData* cfd;
  if (column_family == nullptr) {
    cfd = default_cf_handle_->cfd();
  } else {
    auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
    cfd = cfh->cfd();
1209
  }
1210

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1211 1212 1213 1214
  mutex_.Lock();
  SuperVersion* super_version = cfd->GetSuperVersion()->Ref();
  mutex_.Unlock();
  ReadOptions roptions;
1215 1216
  return NewInternalIterator(roptions, cfd, super_version, arena, range_del_agg,
                             sequence);
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Siying Dong 已提交
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}
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Islam AbdelRahman 已提交
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void DBImpl::SchedulePurge() {
  mutex_.AssertHeld();
  assert(opened_successfully_);
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Islam AbdelRahman 已提交
1222

S
Siying Dong 已提交
1223 1224 1225
  // Purge operations are put into High priority queue
  bg_purge_scheduled_++;
  env_->Schedule(&DBImpl::BGWorkPurge, this, Env::Priority::HIGH, nullptr);
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Islam AbdelRahman 已提交
1226 1227
}

1228 1229 1230
void DBImpl::BackgroundCallPurge() {
  mutex_.Lock();

1231 1232 1233 1234
  // We use one single loop to clear both queues so that after existing the loop
  // both queues are empty. This is stricter than what is needed, but can make
  // it easier for us to reason the correctness.
  while (!purge_queue_.empty() || !logs_to_free_queue_.empty()) {
1235 1236 1237 1238 1239 1240 1241 1242 1243
    // Check logs_to_free_queue_ first and close log writers.
    if (!logs_to_free_queue_.empty()) {
      assert(!logs_to_free_queue_.empty());
      log::Writer* log_writer = *(logs_to_free_queue_.begin());
      logs_to_free_queue_.pop_front();
      mutex_.Unlock();
      delete log_writer;
      mutex_.Lock();
    } else {
1244 1245
      auto purge_file = purge_queue_.begin();
      auto fname = purge_file->fname;
1246
      auto dir_to_sync = purge_file->dir_to_sync;
1247 1248 1249 1250
      auto type = purge_file->type;
      auto number = purge_file->number;
      auto job_id = purge_file->job_id;
      purge_queue_.pop_front();
1251

1252
      mutex_.Unlock();
1253
      DeleteObsoleteFileImpl(job_id, fname, dir_to_sync, type, number);
1254 1255
      mutex_.Lock();
    }
1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266
  }
  bg_purge_scheduled_--;

  bg_cv_.SignalAll();
  // IMPORTANT:there should be no code after calling SignalAll. This call may
  // signal the DB destructor that it's OK to proceed with destruction. In
  // that case, all DB variables will be dealloacated and referencing them
  // will cause trouble.
  mutex_.Unlock();
}

1267 1268
namespace {
struct IterState {
1269
  IterState(DBImpl* _db, InstrumentedMutex* _mu, SuperVersion* _super_version,
1270
            bool _background_purge)
1271 1272 1273
      : db(_db),
        mu(_mu),
        super_version(_super_version),
1274
        background_purge(_background_purge) {}
1275 1276

  DBImpl* db;
1277
  InstrumentedMutex* mu;
1278
  SuperVersion* super_version;
1279
  bool background_purge;
1280 1281
};

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static void CleanupIteratorState(void* arg1, void* /*arg2*/) {
1283
  IterState* state = reinterpret_cast<IterState*>(arg1);
1284

1285
  if (state->super_version->Unref()) {
1286 1287 1288
    // Job id == 0 means that this is not our background process, but rather
    // user thread
    JobContext job_context(0);
1289

1290 1291
    state->mu->Lock();
    state->super_version->Cleanup();
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    state->db->FindObsoleteFiles(&job_context, false, true);
1293 1294 1295
    if (state->background_purge) {
      state->db->ScheduleBgLogWriterClose(&job_context);
    }
1296 1297 1298
    state->mu->Unlock();

    delete state->super_version;
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1299
    if (job_context.HaveSomethingToDelete()) {
1300
      if (state->background_purge) {
1301 1302 1303 1304 1305 1306 1307 1308 1309 1310
        // PurgeObsoleteFiles here does not delete files. Instead, it adds the
        // files to be deleted to a job queue, and deletes it in a separate
        // background thread.
        state->db->PurgeObsoleteFiles(job_context, true /* schedule only */);
        state->mu->Lock();
        state->db->SchedulePurge();
        state->mu->Unlock();
      } else {
        state->db->PurgeObsoleteFiles(job_context);
      }
1311
    }
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Igor Canadi 已提交
1312
    job_context.Clean();
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Igor Canadi 已提交
1313
  }
T
Tomislav Novak 已提交
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1315 1316
  delete state;
}
H
Hans Wennborg 已提交
1317
}  // namespace
1318

1319 1320 1321 1322 1323 1324
InternalIterator* DBImpl::NewInternalIterator(const ReadOptions& read_options,
                                              ColumnFamilyData* cfd,
                                              SuperVersion* super_version,
                                              Arena* arena,
                                              RangeDelAggregator* range_del_agg,
                                              SequenceNumber sequence) {
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1325
  InternalIterator* internal_iter;
1326
  assert(arena != nullptr);
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1327
  assert(range_del_agg != nullptr);
1328
  // Need to create internal iterator from the arena.
1329 1330 1331
  MergeIteratorBuilder merge_iter_builder(
      &cfd->internal_comparator(), arena,
      !read_options.total_order_seek &&
1332
          super_version->mutable_cf_options.prefix_extractor != nullptr);
1333 1334
  // Collect iterator for mutable mem
  merge_iter_builder.AddIterator(
L
Lei Jin 已提交
1335
      super_version->mem->NewIterator(read_options, arena));
1336
  std::unique_ptr<FragmentedRangeTombstoneIterator> range_del_iter;
A
Andrew Kryczka 已提交
1337 1338
  Status s;
  if (!read_options.ignore_range_deletions) {
1339
    range_del_iter.reset(
1340 1341
        super_version->mem->NewRangeTombstoneIterator(read_options, sequence));
    range_del_agg->AddTombstones(std::move(range_del_iter));
A
Andrew Kryczka 已提交
1342
  }
1343
  // Collect all needed child iterators for immutable memtables
A
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1344 1345 1346 1347 1348 1349 1350
  if (s.ok()) {
    super_version->imm->AddIterators(read_options, &merge_iter_builder);
    if (!read_options.ignore_range_deletions) {
      s = super_version->imm->AddRangeTombstoneIterators(read_options, arena,
                                                         range_del_agg);
    }
  }
1351
  TEST_SYNC_POINT_CALLBACK("DBImpl::NewInternalIterator:StatusCallback", &s);
A
Andrew Kryczka 已提交
1352 1353
  if (s.ok()) {
    // Collect iterators for files in L0 - Ln
S
Sagar Vemuri 已提交
1354 1355 1356 1357
    if (read_options.read_tier != kMemtableTier) {
      super_version->current->AddIterators(read_options, env_options_,
                                           &merge_iter_builder, range_del_agg);
    }
A
Andrew Kryczka 已提交
1358 1359 1360
    internal_iter = merge_iter_builder.Finish();
    IterState* cleanup =
        new IterState(this, &mutex_, super_version,
1361 1362
                      read_options.background_purge_on_iterator_cleanup ||
                      immutable_db_options_.avoid_unnecessary_blocking_io);
A
Andrew Kryczka 已提交
1363 1364 1365
    internal_iter->RegisterCleanup(CleanupIteratorState, cleanup, nullptr);

    return internal_iter;
1366 1367
  } else {
    CleanupSuperVersion(super_version);
A
Andrew Kryczka 已提交
1368
  }
1369
  return NewErrorInternalIterator<Slice>(s, arena);
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1370 1371
}

1372 1373 1374 1375
ColumnFamilyHandle* DBImpl::DefaultColumnFamily() const {
  return default_cf_handle_;
}

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1376
Status DBImpl::Get(const ReadOptions& read_options,
S
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1377 1378
                   ColumnFamilyHandle* column_family, const Slice& key,
                   PinnableSlice* value) {
1379 1380 1381 1382 1383 1384 1385 1386 1387 1388
  if (nullptr == read_options.timestamp) {
    return GetImpl(read_options, column_family, key, value);
  }
  Slice akey;
  std::string buf;
  Status s = AppendTimestamp(key, *(read_options.timestamp), &akey, &buf);
  if (s.ok()) {
    s = GetImpl(read_options, column_family, akey, value);
  }
  return s;
L
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1389 1390 1391
}

Status DBImpl::GetImpl(const ReadOptions& read_options,
1392
                       ColumnFamilyHandle* column_family, const Slice& key,
1393
                       PinnableSlice* pinnable_val, bool* value_found,
Y
Yi Wu 已提交
1394
                       ReadCallback* callback, bool* is_blob_index) {
M
Maysam Yabandeh 已提交
1395
  assert(pinnable_val != nullptr);
1396
  PERF_CPU_TIMER_GUARD(get_cpu_nanos, env_);
L
Lei Jin 已提交
1397
  StopWatch sw(env_, stats_, DB_GET);
1398
  PERF_TIMER_GUARD(get_snapshot_time);
1399

1400 1401 1402
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  auto cfd = cfh->cfd();

1403 1404 1405 1406 1407 1408 1409 1410 1411
  if (tracer_) {
    // TODO: This mutex should be removed later, to improve performance when
    // tracing is enabled.
    InstrumentedMutexLock lock(&trace_mutex_);
    if (tracer_) {
      tracer_->Get(column_family, key);
    }
  }

1412 1413 1414 1415 1416 1417
  // Acquire SuperVersion
  SuperVersion* sv = GetAndRefSuperVersion(cfd);

  TEST_SYNC_POINT("DBImpl::GetImpl:1");
  TEST_SYNC_POINT("DBImpl::GetImpl:2");

1418
  SequenceNumber snapshot;
L
Lei Jin 已提交
1419
  if (read_options.snapshot != nullptr) {
1420
    if (callback) {
1421 1422 1423 1424 1425
      // Already calculated based on read_options.snapshot
      snapshot = callback->max_visible_seq();
    } else {
      snapshot =
          reinterpret_cast<const SnapshotImpl*>(read_options.snapshot)->number_;
1426
    }
1427
  } else {
1428 1429 1430 1431 1432
    // Note that the snapshot is assigned AFTER referencing the super
    // version because otherwise a flush happening in between may compact away
    // data for the snapshot, so the reader would see neither data that was be
    // visible to the snapshot before compaction nor the newer data inserted
    // afterwards.
1433 1434 1435
    snapshot = last_seq_same_as_publish_seq_
                   ? versions_->LastSequence()
                   : versions_->LastPublishedSequence();
1436 1437 1438
    if (callback) {
      callback->Refresh(snapshot);
    }
J
jorlow@chromium.org 已提交
1439
  }
1440 1441
  TEST_SYNC_POINT("DBImpl::GetImpl:3");
  TEST_SYNC_POINT("DBImpl::GetImpl:4");
1442

1443
  // Prepare to store a list of merge operations if merge occurs.
1444
  MergeContext merge_context;
1445
  SequenceNumber max_covering_tombstone_seq = 0;
1446

1447
  Status s;
1448
  // First look in the memtable, then in the immutable memtable (if any).
1449
  // s is both in/out. When in, s could either be OK or MergeInProgress.
1450
  // merge_operands will contain the sequence of merges in the latter case.
1451
  LookupKey lkey(key, snapshot);
L
Lei Jin 已提交
1452
  PERF_TIMER_STOP(get_snapshot_time);
1453

1454 1455
  bool skip_memtable = (read_options.read_tier == kPersistedTier &&
                        has_unpersisted_data_.load(std::memory_order_relaxed));
1456 1457
  bool done = false;
  if (!skip_memtable) {
M
Maysam Yabandeh 已提交
1458
    if (sv->mem->Get(lkey, pinnable_val->GetSelf(), &s, &merge_context,
1459 1460
                     &max_covering_tombstone_seq, read_options, callback,
                     is_blob_index)) {
1461
      done = true;
M
Maysam Yabandeh 已提交
1462
      pinnable_val->PinSelf();
1463
      RecordTick(stats_, MEMTABLE_HIT);
A
Andrew Kryczka 已提交
1464
    } else if ((s.ok() || s.IsMergeInProgress()) &&
M
Maysam Yabandeh 已提交
1465
               sv->imm->Get(lkey, pinnable_val->GetSelf(), &s, &merge_context,
1466
                            &max_covering_tombstone_seq, read_options, callback,
Y
Yi Wu 已提交
1467
                            is_blob_index)) {
1468
      done = true;
M
Maysam Yabandeh 已提交
1469
      pinnable_val->PinSelf();
1470 1471
      RecordTick(stats_, MEMTABLE_HIT);
    }
A
Andrew Kryczka 已提交
1472
    if (!done && !s.ok() && !s.IsMergeInProgress()) {
1473
      ReturnAndCleanupSuperVersion(cfd, sv);
A
Andrew Kryczka 已提交
1474 1475
      return s;
    }
1476 1477
  }
  if (!done) {
1478
    PERF_TIMER_GUARD(get_from_output_files_time);
M
Maysam Yabandeh 已提交
1479
    sv->current->Get(read_options, lkey, pinnable_val, &s, &merge_context,
1480 1481
                     &max_covering_tombstone_seq, value_found, nullptr, nullptr,
                     callback, is_blob_index);
L
Lei Jin 已提交
1482
    RecordTick(stats_, MEMTABLE_MISS);
1483
  }
1484

1485 1486
  {
    PERF_TIMER_GUARD(get_post_process_time);
1487

1488
    ReturnAndCleanupSuperVersion(cfd, sv);
1489

1490
    RecordTick(stats_, NUMBER_KEYS_READ);
1491 1492 1493 1494 1495 1496
    size_t size = 0;
    if (s.ok()) {
      size = pinnable_val->size();
      RecordTick(stats_, BYTES_READ, size);
      PERF_COUNTER_ADD(get_read_bytes, size);
    }
S
Siying Dong 已提交
1497
    RecordInHistogram(stats_, BYTES_PER_READ, size);
1498
  }
1499
  return s;
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jorlow@chromium.org 已提交
1500 1501
}

1502
std::vector<Status> DBImpl::MultiGet(
L
Lei Jin 已提交
1503
    const ReadOptions& read_options,
1504
    const std::vector<ColumnFamilyHandle*>& column_family,
1505
    const std::vector<Slice>& keys, std::vector<std::string>* values) {
1506
  PERF_CPU_TIMER_GUARD(get_cpu_nanos, env_);
L
Lei Jin 已提交
1507
  StopWatch sw(env_, stats_, DB_MULTIGET);
1508
  PERF_TIMER_GUARD(get_snapshot_time);
K
Kai Liu 已提交
1509

1510
  SequenceNumber snapshot;
1511

1512
  struct MultiGetColumnFamilyData {
I
Igor Canadi 已提交
1513
    ColumnFamilyData* cfd;
1514
    SuperVersion* super_version;
A
Anand Ananthabhotla 已提交
1515 1516
    MultiGetColumnFamilyData(ColumnFamilyData* cf, SuperVersion* sv)
        : cfd(cf), super_version(sv) {}
1517
  };
A
Anand Ananthabhotla 已提交
1518 1519
  std::unordered_map<uint32_t, MultiGetColumnFamilyData> multiget_cf_data(
      column_family.size());
1520
  for (auto cf : column_family) {
1521 1522 1523
    auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(cf);
    auto cfd = cfh->cfd();
    if (multiget_cf_data.find(cfd->GetID()) == multiget_cf_data.end()) {
A
Anand Ananthabhotla 已提交
1524 1525
      multiget_cf_data.emplace(cfd->GetID(),
                               MultiGetColumnFamilyData(cfd, nullptr));
1526 1527 1528
    }
  }

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Anand Ananthabhotla 已提交
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  bool last_try = false;
  {
    // If we end up with the same issue of memtable geting sealed during 2
    // consecutive retries, it means the write rate is very high. In that case
    // its probably ok to take the mutex on the 3rd try so we can succeed for
    // sure
    static const int num_retries = 3;
    for (auto i = 0; i < num_retries; ++i) {
      last_try = (i == num_retries - 1);
      bool retry = false;

      if (i > 0) {
        for (auto mgd_iter = multiget_cf_data.begin();
             mgd_iter != multiget_cf_data.end(); ++mgd_iter) {
          auto super_version = mgd_iter->second.super_version;
          auto cfd = mgd_iter->second.cfd;
          if (super_version != nullptr) {
            ReturnAndCleanupSuperVersion(cfd, super_version);
          }
          mgd_iter->second.super_version = nullptr;
        }
      }

      if (read_options.snapshot == nullptr) {
        if (last_try) {
          TEST_SYNC_POINT("DBImpl::MultiGet::LastTry");
          // We're close to max number of retries. For the last retry,
          // acquire the lock so we're sure to succeed
          mutex_.Lock();
        }
        snapshot = last_seq_same_as_publish_seq_
                       ? versions_->LastSequence()
                       : versions_->LastPublishedSequence();
      } else {
        snapshot = reinterpret_cast<const SnapshotImpl*>(read_options.snapshot)
                       ->number_;
      }

      for (auto mgd_iter = multiget_cf_data.begin();
           mgd_iter != multiget_cf_data.end(); ++mgd_iter) {
        if (!last_try) {
          mgd_iter->second.super_version =
              GetAndRefSuperVersion(mgd_iter->second.cfd);
        } else {
          mgd_iter->second.super_version =
              mgd_iter->second.cfd->GetSuperVersion()->Ref();
        }
        TEST_SYNC_POINT("DBImpl::MultiGet::AfterRefSV");
        if (read_options.snapshot != nullptr || last_try) {
          // If user passed a snapshot, then we don't care if a memtable is
          // sealed or compaction happens because the snapshot would ensure
          // that older key versions are kept around. If this is the last
          // retry, then we have the lock so nothing bad can happen
          continue;
        }
        // We could get the earliest sequence number for the whole list of
        // memtables, which will include immutable memtables as well, but that
        // might be tricky to maintain in case we decide, in future, to do
        // memtable compaction.
        if (!last_try) {
          auto seq =
              mgd_iter->second.super_version->mem->GetEarliestSequenceNumber();
          if (seq > snapshot) {
            retry = true;
            break;
          }
        }
      }
      if (!retry) {
        if (last_try) {
          mutex_.Unlock();
        }
        break;
      }
    }
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  }
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  // Contain a list of merge operations if merge occurs.
  MergeContext merge_context;
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  // Note: this always resizes the values array
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  size_t num_keys = keys.size();
  std::vector<Status> stat_list(num_keys);
  values->resize(num_keys);
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  // Keep track of bytes that we read for statistics-recording later
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  uint64_t bytes_read = 0;
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  PERF_TIMER_STOP(get_snapshot_time);
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  // For each of the given keys, apply the entire "get" process as follows:
  // First look in the memtable, then in the immutable memtable (if any).
  // s is both in/out. When in, s could either be OK or MergeInProgress.
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  // merge_operands will contain the sequence of merges in the latter case.
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  size_t num_found = 0;
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  for (size_t i = 0; i < num_keys; ++i) {
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    merge_context.Clear();
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    Status& s = stat_list[i];
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    std::string* value = &(*values)[i];

    LookupKey lkey(keys[i], snapshot);
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    auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family[i]);
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    SequenceNumber max_covering_tombstone_seq = 0;
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    auto mgd_iter = multiget_cf_data.find(cfh->cfd()->GetID());
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    assert(mgd_iter != multiget_cf_data.end());
    auto mgd = mgd_iter->second;
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    auto super_version = mgd.super_version;
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    bool skip_memtable =
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        (read_options.read_tier == kPersistedTier &&
         has_unpersisted_data_.load(std::memory_order_relaxed));
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    bool done = false;
    if (!skip_memtable) {
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      if (super_version->mem->Get(lkey, value, &s, &merge_context,
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                                  &max_covering_tombstone_seq, read_options)) {
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        done = true;
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        RecordTick(stats_, MEMTABLE_HIT);
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      } else if (super_version->imm->Get(lkey, value, &s, &merge_context,
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                                         &max_covering_tombstone_seq,
                                         read_options)) {
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        done = true;
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        RecordTick(stats_, MEMTABLE_HIT);
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      }
    }
    if (!done) {
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      PinnableSlice pinnable_val;
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      PERF_TIMER_GUARD(get_from_output_files_time);
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      super_version->current->Get(read_options, lkey, &pinnable_val, &s,
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                                  &merge_context, &max_covering_tombstone_seq);
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      value->assign(pinnable_val.data(), pinnable_val.size());
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      RecordTick(stats_, MEMTABLE_MISS);
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    }

    if (s.ok()) {
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      bytes_read += value->size();
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      num_found++;
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    }
  }

  // Post processing (decrement reference counts and record statistics)
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  PERF_TIMER_GUARD(get_post_process_time);
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  autovector<SuperVersion*> superversions_to_delete;

  for (auto mgd_iter : multiget_cf_data) {
    auto mgd = mgd_iter.second;
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    if (!last_try) {
      ReturnAndCleanupSuperVersion(mgd.cfd, mgd.super_version);
    } else {
      mgd.cfd->GetSuperVersion()->Unref();
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    }
  }
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  RecordTick(stats_, NUMBER_MULTIGET_CALLS);
  RecordTick(stats_, NUMBER_MULTIGET_KEYS_READ, num_keys);
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  RecordTick(stats_, NUMBER_MULTIGET_KEYS_FOUND, num_found);
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  RecordTick(stats_, NUMBER_MULTIGET_BYTES_READ, bytes_read);
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  RecordInHistogram(stats_, BYTES_PER_MULTIGET, bytes_read);
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  PERF_COUNTER_ADD(multiget_read_bytes, bytes_read);
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  PERF_TIMER_STOP(get_post_process_time);
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  return stat_list;
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}

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// Order keys by CF ID, followed by key contents
struct CompareKeyContext {
  inline bool operator()(const KeyContext* lhs, const KeyContext* rhs) {
    const Comparator* comparator = cfd->user_comparator();
    int cmp = comparator->Compare(*(lhs->key), *(rhs->key));
    if (cmp < 0) {
      return true;
    }
    return false;
  }
  const ColumnFamilyData* cfd;
};

void DBImpl::MultiGet(const ReadOptions& read_options,
                      ColumnFamilyHandle* column_family, const size_t num_keys,
                      const Slice* keys, PinnableSlice* values,
                      Status* statuses, const bool sorted_input) {
  autovector<KeyContext, MultiGetContext::MAX_BATCH_SIZE> key_context;
  for (size_t i = 0; i < num_keys; ++i) {
    key_context.emplace_back(keys[i], &values[i], &statuses[i]);
  }

  MultiGetImpl(read_options, column_family, key_context, sorted_input, nullptr,
               nullptr);
}

void DBImpl::MultiGetImpl(
    const ReadOptions& read_options, ColumnFamilyHandle* column_family,
    autovector<KeyContext, MultiGetContext::MAX_BATCH_SIZE>& key_context,
    bool sorted_input, ReadCallback* callback, bool* is_blob_index) {
  PERF_CPU_TIMER_GUARD(get_cpu_nanos, env_);
  StopWatch sw(env_, stats_, DB_MULTIGET);
  size_t num_keys = key_context.size();

  PERF_TIMER_GUARD(get_snapshot_time);

  ColumnFamilyHandleImpl* cfh =
      reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  ColumnFamilyData* cfd = cfh->cfd();

  autovector<KeyContext*, MultiGetContext::MAX_BATCH_SIZE> sorted_keys;
  sorted_keys.resize(num_keys);
  {
    size_t index = 0;
    for (KeyContext& key : key_context) {
#ifndef NDEBUG
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      if (index > 0 && sorted_input) {
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        KeyContext* lhs = &key_context[index-1];
        KeyContext* rhs = &key_context[index];
        const Comparator* comparator = cfd->user_comparator();
        int cmp = comparator->Compare(*(lhs->key), *(rhs->key));
        assert(cmp <= 0);
      }
#endif

      sorted_keys[index] = &key;
      index++;
    }
    if (!sorted_input) {
      CompareKeyContext sort_comparator;
      sort_comparator.cfd = cfd;
      std::sort(sorted_keys.begin(), sorted_keys.begin() + index,
                sort_comparator);
    }
  }

  // Keep track of bytes that we read for statistics-recording later
  PERF_TIMER_STOP(get_snapshot_time);

  // Acquire SuperVersion
  SuperVersion* super_version = GetAndRefSuperVersion(cfd);
  SequenceNumber snapshot;
  if (read_options.snapshot != nullptr) {
    // Note: In WritePrepared txns this is not necessary but not harmful
    // either.  Because prep_seq > snapshot => commit_seq > snapshot so if
    // a snapshot is specified we should be fine with skipping seq numbers
    // that are greater than that.
    //
    // In WriteUnprepared, we cannot set snapshot in the lookup key because we
    // may skip uncommitted data that should be visible to the transaction for
    // reading own writes.
    snapshot =
        reinterpret_cast<const SnapshotImpl*>(read_options.snapshot)->number_;
    if (callback) {
      snapshot = std::max(snapshot, callback->max_visible_seq());
    }
  } else {
    // Since we get and reference the super version before getting
    // the snapshot number, without a mutex protection, it is possible
    // that a memtable switch happened in the middle and not all the
    // data for this snapshot is available. But it will contain all
    // the data available in the super version we have, which is also
    // a valid snapshot to read from.
    // We shouldn't get snapshot before finding and referencing the super
    // version because a flush happening in between may compact away data for
    // the snapshot, but the snapshot is earlier than the data overwriting it,
    // so users may see wrong results.
    snapshot = last_seq_same_as_publish_seq_
                   ? versions_->LastSequence()
                   : versions_->LastPublishedSequence();
  }

  // For each of the given keys, apply the entire "get" process as follows:
  // First look in the memtable, then in the immutable memtable (if any).
  // s is both in/out. When in, s could either be OK or MergeInProgress.
  // merge_operands will contain the sequence of merges in the latter case.
  size_t keys_left = num_keys;
  while (keys_left) {
    size_t batch_size = (keys_left > MultiGetContext::MAX_BATCH_SIZE)
                            ? MultiGetContext::MAX_BATCH_SIZE
                            : keys_left;
    MultiGetContext ctx(&sorted_keys[num_keys - keys_left], batch_size,
                        snapshot);
    MultiGetRange range = ctx.GetMultiGetRange();
    bool lookup_current = false;

    keys_left -= batch_size;
    for (auto mget_iter = range.begin(); mget_iter != range.end();
         ++mget_iter) {
      MergeContext& merge_context = mget_iter->merge_context;
      merge_context.Clear();
      Status& s = *mget_iter->s;
      PinnableSlice* value = mget_iter->value;
      s = Status::OK();

      bool skip_memtable =
          (read_options.read_tier == kPersistedTier &&
           has_unpersisted_data_.load(std::memory_order_relaxed));
      bool done = false;
      if (!skip_memtable) {
        if (super_version->mem->Get(*(mget_iter->lkey), value->GetSelf(), &s,
                                    &merge_context,
                                    &mget_iter->max_covering_tombstone_seq,
                                    read_options, callback, is_blob_index)) {
          done = true;
          value->PinSelf();
          RecordTick(stats_, MEMTABLE_HIT);
        } else if (super_version->imm->Get(
                       *(mget_iter->lkey), value->GetSelf(), &s, &merge_context,
                       &mget_iter->max_covering_tombstone_seq, read_options,
                       callback, is_blob_index)) {
          done = true;
          value->PinSelf();
          RecordTick(stats_, MEMTABLE_HIT);
        }
      }
      if (done) {
        range.MarkKeyDone(mget_iter);
      } else {
        RecordTick(stats_, MEMTABLE_MISS);
        lookup_current = true;
      }
    }

    if (lookup_current) {
      PERF_TIMER_GUARD(get_from_output_files_time);
      super_version->current->MultiGet(read_options, &range, callback,
                                       is_blob_index);
    }
  }

  // Post processing (decrement reference counts and record statistics)
  PERF_TIMER_GUARD(get_post_process_time);
  size_t num_found = 0;
  uint64_t bytes_read = 0;
  for (KeyContext& key : key_context) {
    if (key.s->ok()) {
      bytes_read += key.value->size();
      num_found++;
    }
  }

  ReturnAndCleanupSuperVersion(cfd, super_version);

  RecordTick(stats_, NUMBER_MULTIGET_CALLS);
  RecordTick(stats_, NUMBER_MULTIGET_KEYS_READ, num_keys);
  RecordTick(stats_, NUMBER_MULTIGET_KEYS_FOUND, num_found);
  RecordTick(stats_, NUMBER_MULTIGET_BYTES_READ, bytes_read);
  RecordInHistogram(stats_, BYTES_PER_MULTIGET, bytes_read);
  PERF_COUNTER_ADD(multiget_read_bytes, bytes_read);
  PERF_TIMER_STOP(get_post_process_time);
}

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Status DBImpl::CreateColumnFamily(const ColumnFamilyOptions& cf_options,
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                                  const std::string& column_family,
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                                  ColumnFamilyHandle** handle) {
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  assert(handle != nullptr);
  Status s = CreateColumnFamilyImpl(cf_options, column_family, handle);
  if (s.ok()) {
    s = WriteOptionsFile(true /*need_mutex_lock*/,
                         true /*need_enter_write_thread*/);
  }
  return s;
}

Status DBImpl::CreateColumnFamilies(
    const ColumnFamilyOptions& cf_options,
    const std::vector<std::string>& column_family_names,
    std::vector<ColumnFamilyHandle*>* handles) {
  assert(handles != nullptr);
  handles->clear();
  size_t num_cf = column_family_names.size();
  Status s;
  bool success_once = false;
  for (size_t i = 0; i < num_cf; i++) {
    ColumnFamilyHandle* handle;
    s = CreateColumnFamilyImpl(cf_options, column_family_names[i], &handle);
    if (!s.ok()) {
      break;
    }
    handles->push_back(handle);
    success_once = true;
  }
  if (success_once) {
    Status persist_options_status = WriteOptionsFile(
        true /*need_mutex_lock*/, true /*need_enter_write_thread*/);
    if (s.ok() && !persist_options_status.ok()) {
      s = persist_options_status;
    }
  }
  return s;
}

Status DBImpl::CreateColumnFamilies(
    const std::vector<ColumnFamilyDescriptor>& column_families,
    std::vector<ColumnFamilyHandle*>* handles) {
  assert(handles != nullptr);
  handles->clear();
  size_t num_cf = column_families.size();
  Status s;
  bool success_once = false;
  for (size_t i = 0; i < num_cf; i++) {
    ColumnFamilyHandle* handle;
    s = CreateColumnFamilyImpl(column_families[i].options,
                               column_families[i].name, &handle);
    if (!s.ok()) {
      break;
    }
    handles->push_back(handle);
    success_once = true;
  }
  if (success_once) {
    Status persist_options_status = WriteOptionsFile(
        true /*need_mutex_lock*/, true /*need_enter_write_thread*/);
    if (s.ok() && !persist_options_status.ok()) {
      s = persist_options_status;
    }
  }
  return s;
}

Status DBImpl::CreateColumnFamilyImpl(const ColumnFamilyOptions& cf_options,
                                      const std::string& column_family_name,
                                      ColumnFamilyHandle** handle) {
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  Status s;
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  Status persist_options_status;
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  *handle = nullptr;
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  s = CheckCompressionSupported(cf_options);
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  if (s.ok() && immutable_db_options_.allow_concurrent_memtable_write) {
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    s = CheckConcurrentWritesSupported(cf_options);
  }
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  if (s.ok()) {
    s = CheckCFPathsSupported(initial_db_options_, cf_options);
  }
  if (s.ok()) {
    for (auto& cf_path : cf_options.cf_paths) {
      s = env_->CreateDirIfMissing(cf_path.path);
      if (!s.ok()) {
        break;
      }
    }
  }
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  if (!s.ok()) {
    return s;
  }

1966
  SuperVersionContext sv_context(/* create_superversion */ true);
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  {
1968
    InstrumentedMutexLock l(&mutex_);
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    if (versions_->GetColumnFamilySet()->GetColumnFamily(column_family_name) !=
        nullptr) {
      return Status::InvalidArgument("Column family already exists");
    }
    VersionEdit edit;
    edit.AddColumnFamily(column_family_name);
    uint32_t new_id = versions_->GetColumnFamilySet()->GetNextColumnFamilyID();
    edit.SetColumnFamily(new_id);
    edit.SetLogNumber(logfile_number_);
    edit.SetComparatorName(cf_options.comparator->Name());

    // LogAndApply will both write the creation in MANIFEST and create
    // ColumnFamilyData object
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    {  // write thread
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      WriteThread::Writer w;
      write_thread_.EnterUnbatched(&w, &mutex_);
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      // LogAndApply will both write the creation in MANIFEST and create
      // ColumnFamilyData object
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      s = versions_->LogAndApply(nullptr, MutableCFOptions(cf_options), &edit,
                                 &mutex_, directories_.GetDbDir(), false,
                                 &cf_options);
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      write_thread_.ExitUnbatched(&w);
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    }
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    if (s.ok()) {
      auto* cfd =
          versions_->GetColumnFamilySet()->GetColumnFamily(column_family_name);
      assert(cfd != nullptr);
      s = cfd->AddDirectories();
    }
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    if (s.ok()) {
      single_column_family_mode_ = false;
      auto* cfd =
          versions_->GetColumnFamilySet()->GetColumnFamily(column_family_name);
      assert(cfd != nullptr);
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      InstallSuperVersionAndScheduleWork(cfd, &sv_context,
                                         *cfd->GetLatestMutableCFOptions());
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      if (!cfd->mem()->IsSnapshotSupported()) {
        is_snapshot_supported_ = false;
      }

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      cfd->set_initialized();

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      *handle = new ColumnFamilyHandleImpl(cfd, this, &mutex_);
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      ROCKS_LOG_INFO(immutable_db_options_.info_log,
                     "Created column family [%s] (ID %u)",
                     column_family_name.c_str(), (unsigned)cfd->GetID());
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    } else {
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      ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                      "Creating column family [%s] FAILED -- %s",
                      column_family_name.c_str(), s.ToString().c_str());
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    }
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  }  // InstrumentedMutexLock l(&mutex_)
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  sv_context.Clean();
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  // this is outside the mutex
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  if (s.ok()) {
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    NewThreadStatusCfInfo(
        reinterpret_cast<ColumnFamilyHandleImpl*>(*handle)->cfd());
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  }
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  return s;
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}

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Status DBImpl::DropColumnFamily(ColumnFamilyHandle* column_family) {
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  assert(column_family != nullptr);
  Status s = DropColumnFamilyImpl(column_family);
  if (s.ok()) {
    s = WriteOptionsFile(true /*need_mutex_lock*/,
                         true /*need_enter_write_thread*/);
  }
  return s;
}

Status DBImpl::DropColumnFamilies(
    const std::vector<ColumnFamilyHandle*>& column_families) {
  Status s;
  bool success_once = false;
  for (auto* handle : column_families) {
    s = DropColumnFamilyImpl(handle);
    if (!s.ok()) {
      break;
    }
    success_once = true;
  }
  if (success_once) {
    Status persist_options_status = WriteOptionsFile(
        true /*need_mutex_lock*/, true /*need_enter_write_thread*/);
    if (s.ok() && !persist_options_status.ok()) {
      s = persist_options_status;
    }
  }
  return s;
}

Status DBImpl::DropColumnFamilyImpl(ColumnFamilyHandle* column_family) {
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  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  auto cfd = cfh->cfd();
  if (cfd->GetID() == 0) {
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    return Status::InvalidArgument("Can't drop default column family");
  }
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  bool cf_support_snapshot = cfd->mem()->IsSnapshotSupported();

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  VersionEdit edit;
  edit.DropColumnFamily();
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  edit.SetColumnFamily(cfd->GetID());

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  Status s;
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  {
2079
    InstrumentedMutexLock l(&mutex_);
2080 2081 2082 2083
    if (cfd->IsDropped()) {
      s = Status::InvalidArgument("Column family already dropped!\n");
    }
    if (s.ok()) {
2084
      // we drop column family from a single write thread
2085 2086
      WriteThread::Writer w;
      write_thread_.EnterUnbatched(&w, &mutex_);
2087 2088
      s = versions_->LogAndApply(cfd, *cfd->GetLatestMutableCFOptions(), &edit,
                                 &mutex_);
2089
      write_thread_.ExitUnbatched(&w);
2090
    }
Y
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2091 2092 2093 2094 2095
    if (s.ok()) {
      auto* mutable_cf_options = cfd->GetLatestMutableCFOptions();
      max_total_in_memory_state_ -= mutable_cf_options->write_buffer_size *
                                    mutable_cf_options->max_write_buffer_number;
    }
S
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2096 2097 2098 2099 2100 2101

    if (!cf_support_snapshot) {
      // Dropped Column Family doesn't support snapshot. Need to recalculate
      // is_snapshot_supported_.
      bool new_is_snapshot_supported = true;
      for (auto c : *versions_->GetColumnFamilySet()) {
2102
        if (!c->IsDropped() && !c->mem()->IsSnapshotSupported()) {
S
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2103 2104 2105 2106 2107 2108
          new_is_snapshot_supported = false;
          break;
        }
      }
      is_snapshot_supported_ = new_is_snapshot_supported;
    }
2109
    bg_cv_.SignalAll();
2110
  }
2111

2112
  if (s.ok()) {
Y
Yueh-Hsuan Chiang 已提交
2113 2114 2115 2116
    // Note that here we erase the associated cf_info of the to-be-dropped
    // cfd before its ref-count goes to zero to avoid having to erase cf_info
    // later inside db_mutex.
    EraseThreadStatusCfInfo(cfd);
I
Igor Canadi 已提交
2117
    assert(cfd->IsDropped());
2118 2119
    ROCKS_LOG_INFO(immutable_db_options_.info_log,
                   "Dropped column family with id %u\n", cfd->GetID());
2120
  } else {
2121 2122 2123
    ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                    "Dropping column family with id %u FAILED -- %s\n",
                    cfd->GetID(), s.ToString().c_str());
2124 2125
  }

2126
  return s;
2127 2128
}

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2129
bool DBImpl::KeyMayExist(const ReadOptions& read_options,
2130 2131
                         ColumnFamilyHandle* column_family, const Slice& key,
                         std::string* value, bool* value_found) {
M
Maysam Yabandeh 已提交
2132
  assert(value != nullptr);
2133
  if (value_found != nullptr) {
K
Kai Liu 已提交
2134 2135
    // falsify later if key-may-exist but can't fetch value
    *value_found = true;
2136
  }
L
Lei Jin 已提交
2137
  ReadOptions roptions = read_options;
2138
  roptions.read_tier = kBlockCacheTier;  // read from block cache only
M
Maysam Yabandeh 已提交
2139 2140 2141
  PinnableSlice pinnable_val;
  auto s = GetImpl(roptions, column_family, key, &pinnable_val, value_found);
  value->assign(pinnable_val.data(), pinnable_val.size());
K
Kai Liu 已提交
2142

2143
  // If block_cache is enabled and the index block of the table didn't
K
Kai Liu 已提交
2144 2145 2146
  // not present in block_cache, the return value will be Status::Incomplete.
  // In this case, key may still exist in the table.
  return s.ok() || s.IsIncomplete();
2147 2148
}

2149
Iterator* DBImpl::NewIterator(const ReadOptions& read_options,
2150
                              ColumnFamilyHandle* column_family) {
S
Siying Dong 已提交
2151 2152 2153 2154
  if (read_options.managed) {
    return NewErrorIterator(
        Status::NotSupported("Managed iterator is not supported anymore."));
  }
2155
  Iterator* result = nullptr;
2156 2157 2158 2159
  if (read_options.read_tier == kPersistedTier) {
    return NewErrorIterator(Status::NotSupported(
        "ReadTier::kPersistedData is not yet supported in iterators."));
  }
2160 2161 2162 2163 2164
  // if iterator wants internal keys, we can only proceed if
  // we can guarantee the deletes haven't been processed yet
  if (immutable_db_options_.preserve_deletes &&
      read_options.iter_start_seqnum > 0 &&
      read_options.iter_start_seqnum < preserve_deletes_seqnum_.load()) {
2165 2166 2167 2168
    return NewErrorIterator(Status::InvalidArgument(
        "Iterator requested internal keys which are too old and are not"
        " guaranteed to be preserved, try larger iter_start_seqnum opt."));
  }
2169 2170
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  auto cfd = cfh->cfd();
Y
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2171
  ReadCallback* read_callback = nullptr;  // No read callback provided.
2172
  if (read_options.tailing) {
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2173 2174
#ifdef ROCKSDB_LITE
    // not supported in lite version
2175 2176
    result = nullptr;

I
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2177
#else
2178 2179
    SuperVersion* sv = cfd->GetReferencedSuperVersion(&mutex_);
    auto iter = new ForwardIterator(this, read_options, cfd, sv);
2180 2181 2182
    result = NewDBIterator(
        env_, read_options, *cfd->ioptions(), sv->mutable_cf_options,
        cfd->user_comparator(), iter, kMaxSequenceNumber,
2183 2184
        sv->mutable_cf_options.max_sequential_skip_in_iterations, read_callback,
        this, cfd);
I
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2185
#endif
T
Tomislav Novak 已提交
2186
  } else {
2187
    // Note: no need to consider the special case of
2188
    // last_seq_same_as_publish_seq_==false since NewIterator is overridden in
2189
    // WritePreparedTxnDB
Y
Yi Wu 已提交
2190 2191 2192
    auto snapshot = read_options.snapshot != nullptr
                        ? read_options.snapshot->GetSequenceNumber()
                        : versions_->LastSequence();
2193
    result = NewIteratorImpl(read_options, cfd, snapshot, read_callback);
2194
  }
2195
  return result;
2196 2197
}

Y
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2198 2199 2200
ArenaWrappedDBIter* DBImpl::NewIteratorImpl(const ReadOptions& read_options,
                                            ColumnFamilyData* cfd,
                                            SequenceNumber snapshot,
Y
Yi Wu 已提交
2201
                                            ReadCallback* read_callback,
2202 2203
                                            bool allow_blob,
                                            bool allow_refresh) {
Y
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2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220 2221 2222 2223 2224 2225 2226 2227 2228 2229 2230 2231 2232 2233 2234 2235 2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248
  SuperVersion* sv = cfd->GetReferencedSuperVersion(&mutex_);

  // Try to generate a DB iterator tree in continuous memory area to be
  // cache friendly. Here is an example of result:
  // +-------------------------------+
  // |                               |
  // | ArenaWrappedDBIter            |
  // |  +                            |
  // |  +---> Inner Iterator   ------------+
  // |  |                            |     |
  // |  |    +-- -- -- -- -- -- -- --+     |
  // |  +--- | Arena                 |     |
  // |       |                       |     |
  // |          Allocated Memory:    |     |
  // |       |   +-------------------+     |
  // |       |   | DBIter            | <---+
  // |           |  +                |
  // |       |   |  +-> iter_  ------------+
  // |       |   |                   |     |
  // |       |   +-------------------+     |
  // |       |   | MergingIterator   | <---+
  // |           |  +                |
  // |       |   |  +->child iter1  ------------+
  // |       |   |  |                |          |
  // |           |  +->child iter2  ----------+ |
  // |       |   |  |                |        | |
  // |       |   |  +->child iter3  --------+ | |
  // |           |                   |      | | |
  // |       |   +-------------------+      | | |
  // |       |   | Iterator1         | <--------+
  // |       |   +-------------------+      | |
  // |       |   | Iterator2         | <------+
  // |       |   +-------------------+      |
  // |       |   | Iterator3         | <----+
  // |       |   +-------------------+
  // |       |                       |
  // +-------+-----------------------+
  //
  // ArenaWrappedDBIter inlines an arena area where all the iterators in
  // the iterator tree are allocated in the order of being accessed when
  // querying.
  // Laying out the iterators in the order of being accessed makes it more
  // likely that any iterator pointer is close to the iterator it points to so
  // that they are likely to be in the same cache line and/or page.
  ArenaWrappedDBIter* db_iter = NewArenaWrappedDbIterator(
2249
      env_, read_options, *cfd->ioptions(), sv->mutable_cf_options, snapshot,
Y
Yi Wu 已提交
2250
      sv->mutable_cf_options.max_sequential_skip_in_iterations,
2251 2252
      sv->version_number, read_callback, this, cfd, allow_blob,
      ((read_options.snapshot != nullptr) ? false : allow_refresh));
Y
Yi Wu 已提交
2253 2254 2255

  InternalIterator* internal_iter =
      NewInternalIterator(read_options, cfd, sv, db_iter->GetArena(),
2256
                          db_iter->GetRangeDelAggregator(), snapshot);
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Yi Wu 已提交
2257 2258 2259 2260 2261
  db_iter->SetIterUnderDBIter(internal_iter);

  return db_iter;
}

S
Siying Dong 已提交
2262 2263 2264 2265
Status DBImpl::NewIterators(
    const ReadOptions& read_options,
    const std::vector<ColumnFamilyHandle*>& column_families,
    std::vector<Iterator*>* iterators) {
S
Siying Dong 已提交
2266 2267 2268
  if (read_options.managed) {
    return Status::NotSupported("Managed iterator is not supported anymore.");
  }
S
Siying Dong 已提交
2269 2270 2271 2272
  if (read_options.read_tier == kPersistedTier) {
    return Status::NotSupported(
        "ReadTier::kPersistedData is not yet supported in iterators.");
  }
Y
Yi Wu 已提交
2273
  ReadCallback* read_callback = nullptr;  // No read callback provided.
S
Siying Dong 已提交
2274 2275
  iterators->clear();
  iterators->reserve(column_families.size());
S
Siying Dong 已提交
2276
  if (read_options.tailing) {
S
Siying Dong 已提交
2277 2278
#ifdef ROCKSDB_LITE
    return Status::InvalidArgument(
F
Faustin Lammler 已提交
2279
        "Tailing iterator not supported in RocksDB lite");
S
Siying Dong 已提交
2280 2281 2282 2283 2284 2285
#else
    for (auto cfh : column_families) {
      auto cfd = reinterpret_cast<ColumnFamilyHandleImpl*>(cfh)->cfd();
      SuperVersion* sv = cfd->GetReferencedSuperVersion(&mutex_);
      auto iter = new ForwardIterator(this, read_options, cfd, sv);
      iterators->push_back(NewDBIterator(
2286 2287
          env_, read_options, *cfd->ioptions(), sv->mutable_cf_options,
          cfd->user_comparator(), iter, kMaxSequenceNumber,
Y
Yi Wu 已提交
2288
          sv->mutable_cf_options.max_sequential_skip_in_iterations,
2289
          read_callback, this, cfd));
2290
    }
S
Siying Dong 已提交
2291 2292
#endif
  } else {
2293
    // Note: no need to consider the special case of
2294
    // last_seq_same_as_publish_seq_==false since NewIterators is overridden in
2295
    // WritePreparedTxnDB
Y
Yi Wu 已提交
2296 2297 2298
    auto snapshot = read_options.snapshot != nullptr
                        ? read_options.snapshot->GetSequenceNumber()
                        : versions_->LastSequence();
S
Siying Dong 已提交
2299
    for (size_t i = 0; i < column_families.size(); ++i) {
2300 2301
      auto* cfd =
          reinterpret_cast<ColumnFamilyHandleImpl*>(column_families[i])->cfd();
Y
Yi Wu 已提交
2302 2303
      iterators->push_back(
          NewIteratorImpl(read_options, cfd, snapshot, read_callback));
2304 2305
    }
  }
2306

I
Igor Canadi 已提交
2307
  return Status::OK();
S
Stanislau Hlebik 已提交
2308 2309
}

S
Siying Dong 已提交
2310
const Snapshot* DBImpl::GetSnapshot() { return GetSnapshotImpl(false); }
2311

S
Siying Dong 已提交
2312 2313 2314
#ifndef ROCKSDB_LITE
const Snapshot* DBImpl::GetSnapshotForWriteConflictBoundary() {
  return GetSnapshotImpl(true);
2315 2316 2317
}
#endif  // ROCKSDB_LITE

2318 2319
SnapshotImpl* DBImpl::GetSnapshotImpl(bool is_write_conflict_boundary,
                                      bool lock) {
S
Siying Dong 已提交
2320 2321 2322 2323
  int64_t unix_time = 0;
  env_->GetCurrentTime(&unix_time);  // Ignore error
  SnapshotImpl* s = new SnapshotImpl;

2324 2325 2326
  if (lock) {
    mutex_.Lock();
  }
S
Siying Dong 已提交
2327 2328
  // returns null if the underlying memtable does not support snapshot.
  if (!is_snapshot_supported_) {
2329 2330 2331
    if (lock) {
      mutex_.Unlock();
    }
S
Siying Dong 已提交
2332 2333
    delete s;
    return nullptr;
S
Sage Weil 已提交
2334
  }
2335
  auto snapshot_seq = last_seq_same_as_publish_seq_
2336
                          ? versions_->LastSequence()
2337
                          : versions_->LastPublishedSequence();
2338 2339 2340 2341 2342 2343
  SnapshotImpl* snapshot =
      snapshots_.New(s, snapshot_seq, unix_time, is_write_conflict_boundary);
  if (lock) {
    mutex_.Unlock();
  }
  return snapshot;
S
Siying Dong 已提交
2344
}
2345

2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357
namespace {
typedef autovector<ColumnFamilyData*, 2> CfdList;
bool CfdListContains(const CfdList& list, ColumnFamilyData* cfd) {
  for (const ColumnFamilyData* t : list) {
    if (t == cfd) {
      return true;
    }
  }
  return false;
}
}  //  namespace

S
Siying Dong 已提交
2358 2359
void DBImpl::ReleaseSnapshot(const Snapshot* s) {
  const SnapshotImpl* casted_s = reinterpret_cast<const SnapshotImpl*>(s);
S
Stanislau Hlebik 已提交
2360
  {
S
Siying Dong 已提交
2361 2362
    InstrumentedMutexLock l(&mutex_);
    snapshots_.Delete(casted_s);
2363 2364
    uint64_t oldest_snapshot;
    if (snapshots_.empty()) {
2365
      oldest_snapshot = last_seq_same_as_publish_seq_
2366
                            ? versions_->LastSequence()
2367
                            : versions_->LastPublishedSequence();
2368 2369 2370
    } else {
      oldest_snapshot = snapshots_.oldest()->number_;
    }
2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390 2391 2392 2393 2394 2395 2396 2397
    // Avoid to go through every column family by checking a global threshold
    // first.
    if (oldest_snapshot > bottommost_files_mark_threshold_) {
      CfdList cf_scheduled;
      for (auto* cfd : *versions_->GetColumnFamilySet()) {
        cfd->current()->storage_info()->UpdateOldestSnapshot(oldest_snapshot);
        if (!cfd->current()
                 ->storage_info()
                 ->BottommostFilesMarkedForCompaction()
                 .empty()) {
          SchedulePendingCompaction(cfd);
          MaybeScheduleFlushOrCompaction();
          cf_scheduled.push_back(cfd);
        }
      }

      // Calculate a new threshold, skipping those CFs where compactions are
      // scheduled. We do not do the same pass as the previous loop because
      // mutex might be unlocked during the loop, making the result inaccurate.
      SequenceNumber new_bottommost_files_mark_threshold = kMaxSequenceNumber;
      for (auto* cfd : *versions_->GetColumnFamilySet()) {
        if (CfdListContains(cf_scheduled, cfd)) {
          continue;
        }
        new_bottommost_files_mark_threshold = std::min(
            new_bottommost_files_mark_threshold,
            cfd->current()->storage_info()->bottommost_files_mark_threshold());
2398
      }
2399
      bottommost_files_mark_threshold_ = new_bottommost_files_mark_threshold;
2400
    }
2401
  }
S
Siying Dong 已提交
2402
  delete casted_s;
2403 2404
}

I
Igor Canadi 已提交
2405
#ifndef ROCKSDB_LITE
I
Igor Canadi 已提交
2406 2407 2408 2409 2410
Status DBImpl::GetPropertiesOfAllTables(ColumnFamilyHandle* column_family,
                                        TablePropertiesCollection* props) {
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  auto cfd = cfh->cfd();

2411 2412
  // Increment the ref count
  mutex_.Lock();
I
Igor Canadi 已提交
2413
  auto version = cfd->current();
2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425
  version->Ref();
  mutex_.Unlock();

  auto s = version->GetPropertiesOfAllTables(props);

  // Decrement the ref count
  mutex_.Lock();
  version->Unref();
  mutex_.Unlock();

  return s;
}
2426 2427

Status DBImpl::GetPropertiesOfTablesInRange(ColumnFamilyHandle* column_family,
2428
                                            const Range* range, std::size_t n,
2429 2430 2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443 2444 2445 2446 2447 2448
                                            TablePropertiesCollection* props) {
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  auto cfd = cfh->cfd();

  // Increment the ref count
  mutex_.Lock();
  auto version = cfd->current();
  version->Ref();
  mutex_.Unlock();

  auto s = version->GetPropertiesOfTablesInRange(range, n, props);

  // Decrement the ref count
  mutex_.Lock();
  version->Unref();
  mutex_.Unlock();

  return s;
}

I
Igor Canadi 已提交
2449
#endif  // ROCKSDB_LITE
2450

2451
const std::string& DBImpl::GetName() const { return dbname_; }
I
Igor Canadi 已提交
2452

2453
Env* DBImpl::GetEnv() const { return env_; }
2454

2455 2456
Options DBImpl::GetOptions(ColumnFamilyHandle* column_family) const {
  InstrumentedMutexLock l(&mutex_);
2457
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
2458 2459
  return Options(BuildDBOptions(immutable_db_options_, mutable_db_options_),
                 cfh->cfd()->GetLatestCFOptions());
I
Igor Canadi 已提交
2460 2461
}

2462 2463 2464 2465
DBOptions DBImpl::GetDBOptions() const {
  InstrumentedMutexLock l(&mutex_);
  return BuildDBOptions(immutable_db_options_, mutable_db_options_);
}
2466

2467
bool DBImpl::GetProperty(ColumnFamilyHandle* column_family,
2468
                         const Slice& property, std::string* value) {
2469
  const DBPropertyInfo* property_info = GetPropertyInfo(property);
2470
  value->clear();
2471
  auto cfd = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family)->cfd();
2472 2473 2474
  if (property_info == nullptr) {
    return false;
  } else if (property_info->handle_int) {
2475
    uint64_t int_value;
2476 2477
    bool ret_value =
        GetIntPropertyInternal(cfd, *property_info, false, &int_value);
2478
    if (ret_value) {
2479
      *value = ToString(int_value);
2480 2481
    }
    return ret_value;
2482
  } else if (property_info->handle_string) {
2483
    InstrumentedMutexLock l(&mutex_);
2484
    return cfd->internal_stats()->GetStringProperty(*property_info, property,
2485
                                                    value);
2486 2487 2488 2489 2490 2491 2492
  } else if (property_info->handle_string_dbimpl) {
    std::string tmp_value;
    bool ret_value = (this->*(property_info->handle_string_dbimpl))(&tmp_value);
    if (ret_value) {
      *value = tmp_value;
    }
    return ret_value;
2493
  }
2494 2495 2496 2497
  // Shouldn't reach here since exactly one of handle_string and handle_int
  // should be non-nullptr.
  assert(false);
  return false;
J
jorlow@chromium.org 已提交
2498 2499
}

2500 2501
bool DBImpl::GetMapProperty(ColumnFamilyHandle* column_family,
                            const Slice& property,
2502
                            std::map<std::string, std::string>* value) {
2503 2504 2505 2506 2507 2508 2509 2510 2511 2512 2513 2514 2515 2516 2517
  const DBPropertyInfo* property_info = GetPropertyInfo(property);
  value->clear();
  auto cfd = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family)->cfd();
  if (property_info == nullptr) {
    return false;
  } else if (property_info->handle_map) {
    InstrumentedMutexLock l(&mutex_);
    return cfd->internal_stats()->GetMapProperty(*property_info, property,
                                                 value);
  }
  // If we reach this point it means that handle_map is not provided for the
  // requested property
  return false;
}

2518 2519
bool DBImpl::GetIntProperty(ColumnFamilyHandle* column_family,
                            const Slice& property, uint64_t* value) {
2520 2521
  const DBPropertyInfo* property_info = GetPropertyInfo(property);
  if (property_info == nullptr || property_info->handle_int == nullptr) {
2522 2523
    return false;
  }
2524
  auto cfd = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family)->cfd();
2525
  return GetIntPropertyInternal(cfd, *property_info, false, value);
2526 2527
}

2528
bool DBImpl::GetIntPropertyInternal(ColumnFamilyData* cfd,
2529 2530 2531 2532
                                    const DBPropertyInfo& property_info,
                                    bool is_locked, uint64_t* value) {
  assert(property_info.handle_int != nullptr);
  if (!property_info.need_out_of_mutex) {
2533 2534
    if (is_locked) {
      mutex_.AssertHeld();
2535
      return cfd->internal_stats()->GetIntProperty(property_info, value, this);
2536 2537
    } else {
      InstrumentedMutexLock l(&mutex_);
2538
      return cfd->internal_stats()->GetIntProperty(property_info, value, this);
2539
    }
2540
  } else {
2541 2542 2543 2544 2545 2546
    SuperVersion* sv = nullptr;
    if (!is_locked) {
      sv = GetAndRefSuperVersion(cfd);
    } else {
      sv = cfd->GetSuperVersion();
    }
2547 2548

    bool ret = cfd->internal_stats()->GetIntPropertyOutOfMutex(
2549
        property_info, sv->current, value);
2550

2551 2552 2553
    if (!is_locked) {
      ReturnAndCleanupSuperVersion(cfd, sv);
    }
2554 2555 2556 2557 2558

    return ret;
  }
}

2559 2560 2561 2562 2563 2564 2565 2566 2567 2568
bool DBImpl::GetPropertyHandleOptionsStatistics(std::string* value) {
  assert(value != nullptr);
  Statistics* statistics = immutable_db_options_.statistics.get();
  if (!statistics) {
    return false;
  }
  *value = statistics->ToString();
  return true;
}

S
Siying Dong 已提交
2569 2570 2571 2572
#ifndef ROCKSDB_LITE
Status DBImpl::ResetStats() {
  InstrumentedMutexLock l(&mutex_);
  for (auto* cfd : *versions_->GetColumnFamilySet()) {
2573 2574 2575
    if (cfd->initialized()) {
      cfd->internal_stats()->Clear();
    }
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Siying Dong 已提交
2576 2577 2578 2579 2580
  }
  return Status::OK();
}
#endif  // ROCKSDB_LITE

2581 2582
bool DBImpl::GetAggregatedIntProperty(const Slice& property,
                                      uint64_t* aggregated_value) {
2583 2584
  const DBPropertyInfo* property_info = GetPropertyInfo(property);
  if (property_info == nullptr || property_info->handle_int == nullptr) {
2585 2586 2587 2588 2589 2590 2591 2592 2593
    return false;
  }

  uint64_t sum = 0;
  {
    // Needs mutex to protect the list of column families.
    InstrumentedMutexLock l(&mutex_);
    uint64_t value;
    for (auto* cfd : *versions_->GetColumnFamilySet()) {
2594 2595 2596
      if (!cfd->initialized()) {
        continue;
      }
2597
      if (GetIntPropertyInternal(cfd, *property_info, true, &value)) {
2598 2599 2600 2601 2602 2603 2604 2605 2606 2607
        sum += value;
      } else {
        return false;
      }
    }
  }
  *aggregated_value = sum;
  return true;
}

2608 2609
SuperVersion* DBImpl::GetAndRefSuperVersion(ColumnFamilyData* cfd) {
  // TODO(ljin): consider using GetReferencedSuperVersion() directly
I
Igor Canadi 已提交
2610
  return cfd->GetThreadLocalSuperVersion(&mutex_);
2611 2612
}

A
agiardullo 已提交
2613 2614 2615 2616 2617 2618 2619 2620 2621 2622 2623 2624
// REQUIRED: this function should only be called on the write thread or if the
// mutex is held.
SuperVersion* DBImpl::GetAndRefSuperVersion(uint32_t column_family_id) {
  auto column_family_set = versions_->GetColumnFamilySet();
  auto cfd = column_family_set->GetColumnFamily(column_family_id);
  if (!cfd) {
    return nullptr;
  }

  return GetAndRefSuperVersion(cfd);
}

2625 2626 2627 2628 2629 2630 2631 2632 2633 2634 2635 2636 2637
void DBImpl::CleanupSuperVersion(SuperVersion* sv) {
  // Release SuperVersion
  if (sv->Unref()) {
    {
      InstrumentedMutexLock l(&mutex_);
      sv->Cleanup();
    }
    delete sv;
    RecordTick(stats_, NUMBER_SUPERVERSION_CLEANUPS);
  }
  RecordTick(stats_, NUMBER_SUPERVERSION_RELEASES);
}

2638 2639
void DBImpl::ReturnAndCleanupSuperVersion(ColumnFamilyData* cfd,
                                          SuperVersion* sv) {
2640 2641
  if (!cfd->ReturnThreadLocalSuperVersion(sv)) {
    CleanupSuperVersion(sv);
2642
  }
2643 2644
}

A
agiardullo 已提交
2645 2646 2647 2648 2649 2650 2651 2652 2653 2654 2655 2656 2657 2658 2659 2660 2661 2662 2663 2664 2665 2666 2667 2668
// REQUIRED: this function should only be called on the write thread.
void DBImpl::ReturnAndCleanupSuperVersion(uint32_t column_family_id,
                                          SuperVersion* sv) {
  auto column_family_set = versions_->GetColumnFamilySet();
  auto cfd = column_family_set->GetColumnFamily(column_family_id);

  // If SuperVersion is held, and we successfully fetched a cfd using
  // GetAndRefSuperVersion(), it must still exist.
  assert(cfd != nullptr);
  ReturnAndCleanupSuperVersion(cfd, sv);
}

// REQUIRED: this function should only be called on the write thread or if the
// mutex is held.
ColumnFamilyHandle* DBImpl::GetColumnFamilyHandle(uint32_t column_family_id) {
  ColumnFamilyMemTables* cf_memtables = column_family_memtables_.get();

  if (!cf_memtables->Seek(column_family_id)) {
    return nullptr;
  }

  return cf_memtables->GetColumnFamilyHandle();
}

A
Anirban Rahut 已提交
2669
// REQUIRED: mutex is NOT held.
2670
std::unique_ptr<ColumnFamilyHandle> DBImpl::GetColumnFamilyHandleUnlocked(
A
Anirban Rahut 已提交
2671 2672 2673
    uint32_t column_family_id) {
  InstrumentedMutexLock l(&mutex_);

2674 2675 2676
  auto* cfd =
      versions_->GetColumnFamilySet()->GetColumnFamily(column_family_id);
  if (cfd == nullptr) {
A
Anirban Rahut 已提交
2677 2678 2679
    return nullptr;
  }

2680
  return std::unique_ptr<ColumnFamilyHandleImpl>(
2681
      new ColumnFamilyHandleImpl(cfd, this, &mutex_));
A
Anirban Rahut 已提交
2682 2683
}

2684 2685 2686 2687 2688 2689 2690 2691 2692 2693 2694 2695 2696 2697 2698 2699 2700 2701 2702 2703 2704 2705
void DBImpl::GetApproximateMemTableStats(ColumnFamilyHandle* column_family,
                                         const Range& range,
                                         uint64_t* const count,
                                         uint64_t* const size) {
  ColumnFamilyHandleImpl* cfh =
      reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  ColumnFamilyData* cfd = cfh->cfd();
  SuperVersion* sv = GetAndRefSuperVersion(cfd);

  // Convert user_key into a corresponding internal key.
  InternalKey k1(range.start, kMaxSequenceNumber, kValueTypeForSeek);
  InternalKey k2(range.limit, kMaxSequenceNumber, kValueTypeForSeek);
  MemTable::MemTableStats memStats =
      sv->mem->ApproximateStats(k1.Encode(), k2.Encode());
  MemTable::MemTableStats immStats =
      sv->imm->ApproximateStats(k1.Encode(), k2.Encode());
  *count = memStats.count + immStats.count;
  *size = memStats.size + immStats.size;

  ReturnAndCleanupSuperVersion(cfd, sv);
}

2706
void DBImpl::GetApproximateSizes(ColumnFamilyHandle* column_family,
2707
                                 const Range* range, int n, uint64_t* sizes,
2708 2709 2710
                                 uint8_t include_flags) {
  assert(include_flags & DB::SizeApproximationFlags::INCLUDE_FILES ||
         include_flags & DB::SizeApproximationFlags::INCLUDE_MEMTABLES);
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jorlow@chromium.org 已提交
2711
  Version* v;
2712 2713
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  auto cfd = cfh->cfd();
2714 2715
  SuperVersion* sv = GetAndRefSuperVersion(cfd);
  v = sv->current;
J
jorlow@chromium.org 已提交
2716 2717 2718

  for (int i = 0; i < n; i++) {
    // Convert user_key into a corresponding internal key.
2719 2720
    InternalKey k1(range[i].start, kMaxSequenceNumber, kValueTypeForSeek);
    InternalKey k2(range[i].limit, kMaxSequenceNumber, kValueTypeForSeek);
V
Vitaliy Liptchinsky 已提交
2721
    sizes[i] = 0;
2722
    if (include_flags & DB::SizeApproximationFlags::INCLUDE_FILES) {
2723 2724 2725
      sizes[i] += versions_->ApproximateSize(
          v, k1.Encode(), k2.Encode(), /*start_level=*/0, /*end_level=*/-1,
          /*for_compaction=*/false);
2726 2727
    }
    if (include_flags & DB::SizeApproximationFlags::INCLUDE_MEMTABLES) {
2728 2729
      sizes[i] += sv->mem->ApproximateStats(k1.Encode(), k2.Encode()).size;
      sizes[i] += sv->imm->ApproximateStats(k1.Encode(), k2.Encode()).size;
2730
    }
J
jorlow@chromium.org 已提交
2731 2732
  }

2733
  ReturnAndCleanupSuperVersion(cfd, sv);
J
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2734 2735
}

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2736 2737 2738 2739 2740 2741 2742 2743 2744 2745 2746 2747 2748 2749 2750 2751
std::list<uint64_t>::iterator
DBImpl::CaptureCurrentFileNumberInPendingOutputs() {
  // We need to remember the iterator of our insert, because after the
  // background job is done, we need to remove that element from
  // pending_outputs_.
  pending_outputs_.push_back(versions_->current_next_file_number());
  auto pending_outputs_inserted_elem = pending_outputs_.end();
  --pending_outputs_inserted_elem;
  return pending_outputs_inserted_elem;
}

void DBImpl::ReleaseFileNumberFromPendingOutputs(
    std::list<uint64_t>::iterator v) {
  pending_outputs_.erase(v);
}

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Igor Canadi 已提交
2752 2753
#ifndef ROCKSDB_LITE
Status DBImpl::GetUpdatesSince(
2754
    SequenceNumber seq, std::unique_ptr<TransactionLogIterator>* iter,
I
Igor Canadi 已提交
2755
    const TransactionLogIterator::ReadOptions& read_options) {
L
Lei Jin 已提交
2756
  RecordTick(stats_, GET_UPDATES_SINCE_CALLS);
I
Igor Canadi 已提交
2757 2758 2759
  if (seq > versions_->LastSequence()) {
    return Status::NotFound("Requested sequence not yet written in the db");
  }
I
Igor Canadi 已提交
2760
  return wal_manager_.GetUpdatesSince(seq, iter, read_options, versions_.get());
I
Igor Canadi 已提交
2761 2762
}

2763 2764 2765
Status DBImpl::DeleteFile(std::string name) {
  uint64_t number;
  FileType type;
2766 2767 2768
  WalFileType log_type;
  if (!ParseFileName(name, &number, &type, &log_type) ||
      (type != kTableFile && type != kLogFile)) {
2769 2770
    ROCKS_LOG_ERROR(immutable_db_options_.info_log, "DeleteFile %s failed.\n",
                    name.c_str());
2771 2772 2773
    return Status::InvalidArgument("Invalid file name");
  }

2774 2775 2776 2777
  Status status;
  if (type == kLogFile) {
    // Only allow deleting archived log files
    if (log_type != kArchivedLogFile) {
2778 2779 2780
      ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                      "DeleteFile %s failed - not archived log.\n",
                      name.c_str());
2781 2782
      return Status::NotSupported("Delete only supported for archived logs");
    }
C
Changli Gao 已提交
2783
    status = wal_manager_.DeleteFile(name, number);
2784
    if (!status.ok()) {
2785 2786 2787
      ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                      "DeleteFile %s failed -- %s.\n", name.c_str(),
                      status.ToString().c_str());
2788 2789 2790 2791
    }
    return status;
  }

2792
  int level;
I
Igor Canadi 已提交
2793
  FileMetaData* metadata;
2794
  ColumnFamilyData* cfd;
2795
  VersionEdit edit;
2796
  JobContext job_context(next_job_id_.fetch_add(1), true);
D
Dhruba Borthakur 已提交
2797
  {
2798
    InstrumentedMutexLock l(&mutex_);
2799
    status = versions_->GetMetadataForFile(number, &level, &metadata, &cfd);
D
Dhruba Borthakur 已提交
2800
    if (!status.ok()) {
2801 2802
      ROCKS_LOG_WARN(immutable_db_options_.info_log,
                     "DeleteFile %s failed. File not found\n", name.c_str());
I
Igor Canadi 已提交
2803
      job_context.Clean();
D
Dhruba Borthakur 已提交
2804 2805
      return Status::InvalidArgument("File not found");
    }
2806
    assert(level < cfd->NumberLevels());
2807

D
Dhruba Borthakur 已提交
2808
    // If the file is being compacted no need to delete.
2809
    if (metadata->being_compacted) {
2810 2811 2812
      ROCKS_LOG_INFO(immutable_db_options_.info_log,
                     "DeleteFile %s Skipped. File about to be compacted\n",
                     name.c_str());
I
Igor Canadi 已提交
2813
      job_context.Clean();
D
Dhruba Borthakur 已提交
2814
      return Status::OK();
2815 2816
    }

D
Dhruba Borthakur 已提交
2817 2818 2819
    // Only the files in the last level can be deleted externally.
    // This is to make sure that any deletion tombstones are not
    // lost. Check that the level passed is the last level.
S
sdong 已提交
2820
    auto* vstoreage = cfd->current()->storage_info();
I
Igor Canadi 已提交
2821
    for (int i = level + 1; i < cfd->NumberLevels(); i++) {
S
sdong 已提交
2822
      if (vstoreage->NumLevelFiles(i) != 0) {
2823 2824 2825
        ROCKS_LOG_WARN(immutable_db_options_.info_log,
                       "DeleteFile %s FAILED. File not in last level\n",
                       name.c_str());
I
Igor Canadi 已提交
2826
        job_context.Clean();
D
Dhruba Borthakur 已提交
2827 2828 2829
        return Status::InvalidArgument("File not in last level");
      }
    }
2830
    // if level == 0, it has to be the oldest file
S
sdong 已提交
2831 2832
    if (level == 0 &&
        vstoreage->LevelFiles(0).back()->fd.GetNumber() != number) {
2833 2834 2835 2836
      ROCKS_LOG_WARN(immutable_db_options_.info_log,
                     "DeleteFile %s failed ---"
                     " target file in level 0 must be the oldest.",
                     name.c_str());
I
Igor Canadi 已提交
2837
      job_context.Clean();
2838 2839 2840
      return Status::InvalidArgument("File in level 0, but not oldest");
    }
    edit.SetColumnFamily(cfd->GetID());
D
Dhruba Borthakur 已提交
2841
    edit.DeleteFile(level, number);
2842
    status = versions_->LogAndApply(cfd, *cfd->GetLatestMutableCFOptions(),
2843
                                    &edit, &mutex_, directories_.GetDbDir());
I
Igor Canadi 已提交
2844
    if (status.ok()) {
Y
Yanqin Jin 已提交
2845 2846 2847
      InstallSuperVersionAndScheduleWork(cfd,
                                         &job_context.superversion_contexts[0],
                                         *cfd->GetLatestMutableCFOptions());
I
Igor Canadi 已提交
2848
    }
I
Igor Canadi 已提交
2849 2850
    FindObsoleteFiles(&job_context, false);
  }  // lock released here
2851

2852
  LogFlush(immutable_db_options_.info_log);
2853 2854 2855 2856 2857 2858 2859 2860 2861
  // remove files outside the db-lock
  if (job_context.HaveSomethingToDelete()) {
    // Call PurgeObsoleteFiles() without holding mutex.
    PurgeObsoleteFiles(job_context);
  }
  job_context.Clean();
  return status;
}

2862 2863 2864
Status DBImpl::DeleteFilesInRanges(ColumnFamilyHandle* column_family,
                                   const RangePtr* ranges, size_t n,
                                   bool include_end) {
2865 2866 2867 2868
  Status status;
  auto cfh = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family);
  ColumnFamilyData* cfd = cfh->cfd();
  VersionEdit edit;
2869
  std::set<FileMetaData*> deleted_files;
2870 2871 2872
  JobContext job_context(next_job_id_.fetch_add(1), true);
  {
    InstrumentedMutexLock l(&mutex_);
2873
    Version* input_version = cfd->current();
2874

2875
    auto* vstorage = input_version->storage_info();
2876 2877 2878 2879 2880
    for (size_t r = 0; r < n; r++) {
      auto begin = ranges[r].start, end = ranges[r].limit;
      for (int i = 1; i < cfd->NumberLevels(); i++) {
        if (vstorage->LevelFiles(i).empty() ||
            !vstorage->OverlapInLevel(i, begin, end)) {
2881
          continue;
2882
        }
2883 2884 2885 2886 2887 2888 2889 2890 2891 2892 2893 2894 2895 2896 2897
        std::vector<FileMetaData*> level_files;
        InternalKey begin_storage, end_storage, *begin_key, *end_key;
        if (begin == nullptr) {
          begin_key = nullptr;
        } else {
          begin_storage.SetMinPossibleForUserKey(*begin);
          begin_key = &begin_storage;
        }
        if (end == nullptr) {
          end_key = nullptr;
        } else {
          end_storage.SetMaxPossibleForUserKey(*end);
          end_key = &end_storage;
        }

2898 2899 2900
        vstorage->GetCleanInputsWithinInterval(
            i, begin_key, end_key, &level_files, -1 /* hint_index */,
            nullptr /* file_index */);
2901 2902 2903 2904 2905 2906 2907 2908 2909 2910
        FileMetaData* level_file;
        for (uint32_t j = 0; j < level_files.size(); j++) {
          level_file = level_files[j];
          if (level_file->being_compacted) {
            continue;
          }
          if (deleted_files.find(level_file) != deleted_files.end()) {
            continue;
          }
          if (!include_end && end != nullptr &&
2911 2912
              cfd->user_comparator()->Compare(level_file->largest.user_key(),
                                              *end) == 0) {
2913 2914 2915 2916 2917 2918 2919
            continue;
          }
          edit.SetColumnFamily(cfd->GetID());
          edit.DeleteFile(i, level_file->fd.GetNumber());
          deleted_files.insert(level_file);
          level_file->being_compacted = true;
        }
2920 2921 2922
      }
    }
    if (edit.GetDeletedFiles().empty()) {
2923
      job_context.Clean();
2924 2925
      return Status::OK();
    }
2926
    input_version->Ref();
2927 2928 2929
    status = versions_->LogAndApply(cfd, *cfd->GetLatestMutableCFOptions(),
                                    &edit, &mutex_, directories_.GetDbDir());
    if (status.ok()) {
Y
Yanqin Jin 已提交
2930 2931 2932
      InstallSuperVersionAndScheduleWork(cfd,
                                         &job_context.superversion_contexts[0],
                                         *cfd->GetLatestMutableCFOptions());
2933
    }
2934 2935 2936 2937
    for (auto* deleted_file : deleted_files) {
      deleted_file->being_compacted = false;
    }
    input_version->Unref();
2938 2939 2940
    FindObsoleteFiles(&job_context, false);
  }  // lock released here

2941
  LogFlush(immutable_db_options_.info_log);
I
Igor Canadi 已提交
2942
  // remove files outside the db-lock
I
Igor Canadi 已提交
2943
  if (job_context.HaveSomethingToDelete()) {
2944
    // Call PurgeObsoleteFiles() without holding mutex.
I
Igor Canadi 已提交
2945
    PurgeObsoleteFiles(job_context);
2946
  }
I
Igor Canadi 已提交
2947
  job_context.Clean();
2948 2949 2950
  return status;
}

2951
void DBImpl::GetLiveFilesMetaData(std::vector<LiveFileMetaData>* metadata) {
2952
  InstrumentedMutexLock l(&mutex_);
2953
  versions_->GetLiveFilesMetaData(metadata);
2954
}
2955

2956 2957
void DBImpl::GetColumnFamilyMetaData(ColumnFamilyHandle* column_family,
                                     ColumnFamilyMetaData* cf_meta) {
2958 2959 2960 2961 2962 2963 2964
  assert(column_family);
  auto* cfd = reinterpret_cast<ColumnFamilyHandleImpl*>(column_family)->cfd();
  auto* sv = GetAndRefSuperVersion(cfd);
  sv->current->GetColumnFamilyMetaData(cf_meta);
  ReturnAndCleanupSuperVersion(cfd, sv);
}

I
Igor Canadi 已提交
2965
#endif  // ROCKSDB_LITE
2966

I
Igor Canadi 已提交
2967 2968 2969 2970 2971 2972 2973
Status DBImpl::CheckConsistency() {
  mutex_.AssertHeld();
  std::vector<LiveFileMetaData> metadata;
  versions_->GetLiveFilesMetaData(&metadata);

  std::string corruption_messages;
  for (const auto& md : metadata) {
2974 2975
    // md.name has a leading "/".
    std::string file_path = md.db_path + md.name;
2976

I
Igor Canadi 已提交
2977 2978
    uint64_t fsize = 0;
    Status s = env_->GetFileSize(file_path, &fsize);
D
dyniusz 已提交
2979 2980 2981 2982
    if (!s.ok() &&
        env_->GetFileSize(Rocks2LevelTableFileName(file_path), &fsize).ok()) {
      s = Status::OK();
    }
I
Igor Canadi 已提交
2983 2984 2985 2986
    if (!s.ok()) {
      corruption_messages +=
          "Can't access " + md.name + ": " + s.ToString() + "\n";
    } else if (fsize != md.size) {
2987
      corruption_messages += "Sst file size mismatch: " + file_path +
I
Igor Canadi 已提交
2988
                             ". Size recorded in manifest " +
2989 2990
                             ToString(md.size) + ", actual size " +
                             ToString(fsize) + "\n";
I
Igor Canadi 已提交
2991 2992 2993 2994 2995 2996 2997 2998 2999
    }
  }
  if (corruption_messages.size() == 0) {
    return Status::OK();
  } else {
    return Status::Corruption(corruption_messages);
  }
}

3000
Status DBImpl::GetDbIdentity(std::string& identity) const {
3001 3002
  std::string idfilename = IdentityFileName(dbname_);
  const EnvOptions soptions;
3003
  std::unique_ptr<SequentialFileReader> id_file_reader;
3004 3005
  Status s;
  {
3006
    std::unique_ptr<SequentialFile> idfile;
3007 3008 3009 3010
    s = env_->NewSequentialFile(idfilename, &idfile, soptions);
    if (!s.ok()) {
      return s;
    }
3011 3012
    id_file_reader.reset(
        new SequentialFileReader(std::move(idfile), idfilename));
3013
  }
3014

3015 3016 3017 3018 3019
  uint64_t file_size;
  s = env_->GetFileSize(idfilename, &file_size);
  if (!s.ok()) {
    return s;
  }
3020 3021
  char* buffer =
      reinterpret_cast<char*>(alloca(static_cast<size_t>(file_size)));
3022
  Slice id;
3023
  s = id_file_reader->Read(static_cast<size_t>(file_size), &id, buffer);
3024 3025 3026 3027 3028 3029 3030 3031 3032 3033 3034
  if (!s.ok()) {
    return s;
  }
  identity.assign(id.ToString());
  // If last character is '\n' remove it from identity
  if (identity.size() > 0 && identity.back() == '\n') {
    identity.pop_back();
  }
  return s;
}

3035
// Default implementation -- returns not supported status
A
Andrew Kryczka 已提交
3036 3037 3038
Status DB::CreateColumnFamily(const ColumnFamilyOptions& /*cf_options*/,
                              const std::string& /*column_family_name*/,
                              ColumnFamilyHandle** /*handle*/) {
3039
  return Status::NotSupported("");
3040
}
Y
Yi Wu 已提交
3041 3042

Status DB::CreateColumnFamilies(
A
Andrew Kryczka 已提交
3043 3044 3045
    const ColumnFamilyOptions& /*cf_options*/,
    const std::vector<std::string>& /*column_family_names*/,
    std::vector<ColumnFamilyHandle*>* /*handles*/) {
Y
Yi Wu 已提交
3046 3047 3048 3049
  return Status::NotSupported("");
}

Status DB::CreateColumnFamilies(
A
Andrew Kryczka 已提交
3050 3051
    const std::vector<ColumnFamilyDescriptor>& /*column_families*/,
    std::vector<ColumnFamilyHandle*>* /*handles*/) {
Y
Yi Wu 已提交
3052 3053 3054
  return Status::NotSupported("");
}

A
Andrew Kryczka 已提交
3055
Status DB::DropColumnFamily(ColumnFamilyHandle* /*column_family*/) {
3056
  return Status::NotSupported("");
3057
}
Y
Yi Wu 已提交
3058 3059

Status DB::DropColumnFamilies(
A
Andrew Kryczka 已提交
3060
    const std::vector<ColumnFamilyHandle*>& /*column_families*/) {
Y
Yi Wu 已提交
3061 3062 3063
  return Status::NotSupported("");
}

3064 3065 3066 3067
Status DB::DestroyColumnFamilyHandle(ColumnFamilyHandle* column_family) {
  delete column_family;
  return Status::OK();
}
3068

3069 3070 3071 3072
DB::~DB() {}

Status DBImpl::Close() {
  if (!closed_) {
3073 3074 3075 3076 3077 3078 3079 3080
    {
      InstrumentedMutexLock l(&mutex_);
      // If there is unreleased snapshot, fail the close call
      if (!snapshots_.empty()) {
        return Status::Aborted("Cannot close DB with unreleased snapshot.");
      }
    }

3081 3082 3083 3084 3085
    closed_ = true;
    return CloseImpl();
  }
  return Status::OK();
}
J
jorlow@chromium.org 已提交
3086

3087 3088 3089
Status DB::ListColumnFamilies(const DBOptions& db_options,
                              const std::string& name,
                              std::vector<std::string>* column_families) {
I
Igor Canadi 已提交
3090
  return VersionSet::ListColumnFamilies(column_families, name, db_options.env);
3091 3092
}

3093
Snapshot::~Snapshot() {}
3094

3095 3096
Status DestroyDB(const std::string& dbname, const Options& options,
                 const std::vector<ColumnFamilyDescriptor>& column_families) {
D
Dmitri Smirnov 已提交
3097
  ImmutableDBOptions soptions(SanitizeOptions(dbname, options));
3098
  Env* env = soptions.env;
J
jorlow@chromium.org 已提交
3099
  std::vector<std::string> filenames;
3100

D
Dmitri Smirnov 已提交
3101 3102 3103
  // Reset the logger because it holds a handle to the
  // log file and prevents cleanup and directory removal
  soptions.info_log.reset();
J
jorlow@chromium.org 已提交
3104 3105
  // Ignore error in case directory does not exist
  env->GetChildren(dbname, &filenames);
3106

J
jorlow@chromium.org 已提交
3107
  FileLock* lock;
3108 3109
  const std::string lockname = LockFileName(dbname);
  Status result = env->LockFile(lockname, &lock);
J
jorlow@chromium.org 已提交
3110 3111 3112
  if (result.ok()) {
    uint64_t number;
    FileType type;
3113
    InfoLogPrefix info_log_prefix(!soptions.db_log_dir.empty(), dbname);
D
Dmitri Smirnov 已提交
3114 3115
    for (const auto& fname : filenames) {
      if (ParseFileName(fname, &number, info_log_prefix.prefix, &type) &&
3116
          type != kDBLockFile) {  // Lock file will be deleted at end
K
Kosie van der Merwe 已提交
3117
        Status del;
D
Dmitri Smirnov 已提交
3118
        std::string path_to_delete = dbname + "/" + fname;
K
Kosie van der Merwe 已提交
3119
        if (type == kMetaDatabase) {
3120
          del = DestroyDB(path_to_delete, options);
3121 3122
        } else if (type == kTableFile || type == kLogFile) {
          del = DeleteDBFile(&soptions, path_to_delete, dbname);
K
Kosie van der Merwe 已提交
3123
        } else {
3124
          del = env->DeleteFile(path_to_delete);
K
Kosie van der Merwe 已提交
3125
        }
J
jorlow@chromium.org 已提交
3126 3127 3128 3129 3130
        if (result.ok() && !del.ok()) {
          result = del;
        }
      }
    }
3131

3132 3133
    std::vector<std::string> paths;

D
Dmitri Smirnov 已提交
3134 3135
    for (const auto& path : options.db_paths) {
      paths.emplace_back(path.path);
3136
    }
D
Dmitri Smirnov 已提交
3137 3138 3139
    for (const auto& cf : column_families) {
      for (const auto& path : cf.options.cf_paths) {
        paths.emplace_back(path.path);
3140 3141 3142 3143 3144 3145 3146 3147 3148 3149
      }
    }

    // Remove duplicate paths.
    // Note that we compare only the actual paths but not path ids.
    // This reason is that same path can appear at different path_ids
    // for different column families.
    std::sort(paths.begin(), paths.end());
    paths.erase(std::unique(paths.begin(), paths.end()), paths.end());

D
Dmitri Smirnov 已提交
3150 3151 3152 3153
    for (const auto& path : paths) {
      if (env->GetChildren(path, &filenames).ok()) {
        for (const auto& fname : filenames) {
          if (ParseFileName(fname, &number, &type) &&
3154
              type == kTableFile) {  // Lock file will be deleted at end
D
Dmitri Smirnov 已提交
3155
            std::string table_path = path + "/" + fname;
3156
            Status del = DeleteDBFile(&soptions, table_path, dbname);
D
Dmitri Smirnov 已提交
3157 3158 3159
            if (result.ok() && !del.ok()) {
              result = del;
            }
3160 3161
          }
        }
D
Dmitri Smirnov 已提交
3162
        env->DeleteDir(path);
3163 3164 3165
      }
    }

I
Igor Canadi 已提交
3166 3167
    std::vector<std::string> walDirFiles;
    std::string archivedir = ArchivalDirectory(dbname);
D
Dmitri Smirnov 已提交
3168
    bool wal_dir_exists = false;
I
Igor Canadi 已提交
3169
    if (dbname != soptions.wal_dir) {
D
Dmitri Smirnov 已提交
3170
      wal_dir_exists = env->GetChildren(soptions.wal_dir, &walDirFiles).ok();
I
Igor Canadi 已提交
3171 3172 3173
      archivedir = ArchivalDirectory(soptions.wal_dir);
    }

D
Dmitri Smirnov 已提交
3174 3175 3176 3177 3178 3179 3180
    // Archive dir may be inside wal dir or dbname and should be
    // processed and removed before those otherwise we have issues
    // removing them
    std::vector<std::string> archiveFiles;
    if (env->GetChildren(archivedir, &archiveFiles).ok()) {
      // Delete archival files.
      for (const auto& file : archiveFiles) {
3181
        if (ParseFileName(file, &number, &type) && type == kLogFile) {
3182 3183
          Status del =
              DeleteDBFile(&soptions, archivedir + "/" + file, archivedir);
D
Dmitri Smirnov 已提交
3184 3185 3186
          if (result.ok() && !del.ok()) {
            result = del;
          }
I
Igor Canadi 已提交
3187 3188
        }
      }
D
Dmitri Smirnov 已提交
3189
      env->DeleteDir(archivedir);
I
Igor Canadi 已提交
3190 3191
    }

D
Dmitri Smirnov 已提交
3192 3193 3194 3195
    // Delete log files in the WAL dir
    if (wal_dir_exists) {
      for (const auto& file : walDirFiles) {
        if (ParseFileName(file, &number, &type) && type == kLogFile) {
3196 3197 3198
          Status del =
              DeleteDBFile(&soptions, LogFileName(soptions.wal_dir, number),
                           soptions.wal_dir);
D
Dmitri Smirnov 已提交
3199 3200 3201
          if (result.ok() && !del.ok()) {
            result = del;
          }
3202 3203
        }
      }
D
Dmitri Smirnov 已提交
3204
      env->DeleteDir(soptions.wal_dir);
3205
    }
3206

J
jorlow@chromium.org 已提交
3207
    env->UnlockFile(lock);  // Ignore error since state is already gone
3208
    env->DeleteFile(lockname);
J
jorlow@chromium.org 已提交
3209 3210 3211 3212 3213
    env->DeleteDir(dbname);  // Ignore error in case dir contains other files
  }
  return result;
}

Y
Yi Wu 已提交
3214 3215
Status DBImpl::WriteOptionsFile(bool need_mutex_lock,
                                bool need_enter_write_thread) {
3216
#ifndef ROCKSDB_LITE
Y
Yi Wu 已提交
3217 3218 3219 3220 3221 3222 3223 3224 3225
  WriteThread::Writer w;
  if (need_mutex_lock) {
    mutex_.Lock();
  } else {
    mutex_.AssertHeld();
  }
  if (need_enter_write_thread) {
    write_thread_.EnterUnbatched(&w, &mutex_);
  }
3226 3227 3228

  std::vector<std::string> cf_names;
  std::vector<ColumnFamilyOptions> cf_opts;
3229 3230 3231 3232 3233

  // This part requires mutex to protect the column family options
  for (auto cfd : *versions_->GetColumnFamilySet()) {
    if (cfd->IsDropped()) {
      continue;
3234
    }
3235
    cf_names.push_back(cfd->GetName());
3236
    cf_opts.push_back(cfd->GetLatestCFOptions());
3237 3238
  }

3239 3240
  // Unlock during expensive operations.  New writes cannot get here
  // because the single write thread ensures all new writes get queued.
3241 3242
  DBOptions db_options =
      BuildDBOptions(immutable_db_options_, mutable_db_options_);
3243 3244
  mutex_.Unlock();

3245 3246 3247
  TEST_SYNC_POINT("DBImpl::WriteOptionsFile:1");
  TEST_SYNC_POINT("DBImpl::WriteOptionsFile:2");

3248 3249
  std::string file_name =
      TempOptionsFileName(GetName(), versions_->NewFileNumber());
3250 3251
  Status s =
      PersistRocksDBOptions(db_options, cf_names, cf_opts, file_name, GetEnv());
3252 3253 3254 3255

  if (s.ok()) {
    s = RenameTempFileToOptionsFile(file_name);
  }
Y
Yi Wu 已提交
3256 3257 3258 3259 3260 3261 3262 3263 3264 3265 3266 3267 3268 3269 3270
  // restore lock
  if (!need_mutex_lock) {
    mutex_.Lock();
  }
  if (need_enter_write_thread) {
    write_thread_.ExitUnbatched(&w);
  }
  if (!s.ok()) {
    ROCKS_LOG_WARN(immutable_db_options_.info_log,
                   "Unnable to persist options -- %s", s.ToString().c_str());
    if (immutable_db_options_.fail_if_options_file_error) {
      return Status::IOError("Unable to persist options.",
                             s.ToString().c_str());
    }
  }
3271 3272 3273
#else
  (void)need_mutex_lock;
  (void)need_enter_write_thread;
3274
#endif  // !ROCKSDB_LITE
Y
Yi Wu 已提交
3275
  return Status::OK();
3276 3277 3278 3279 3280 3281 3282 3283 3284 3285 3286 3287 3288 3289
}

#ifndef ROCKSDB_LITE
namespace {
void DeleteOptionsFilesHelper(const std::map<uint64_t, std::string>& filenames,
                              const size_t num_files_to_keep,
                              const std::shared_ptr<Logger>& info_log,
                              Env* env) {
  if (filenames.size() <= num_files_to_keep) {
    return;
  }
  for (auto iter = std::next(filenames.begin(), num_files_to_keep);
       iter != filenames.end(); ++iter) {
    if (!env->DeleteFile(iter->second).ok()) {
3290 3291
      ROCKS_LOG_WARN(info_log, "Unable to delete options file %s",
                     iter->second.c_str());
3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309 3310 3311 3312 3313 3314 3315 3316 3317 3318 3319 3320 3321
    }
  }
}
}  // namespace
#endif  // !ROCKSDB_LITE

Status DBImpl::DeleteObsoleteOptionsFiles() {
#ifndef ROCKSDB_LITE
  std::vector<std::string> filenames;
  // use ordered map to store keep the filenames sorted from the newest
  // to the oldest.
  std::map<uint64_t, std::string> options_filenames;
  Status s;
  s = GetEnv()->GetChildren(GetName(), &filenames);
  if (!s.ok()) {
    return s;
  }
  for (auto& filename : filenames) {
    uint64_t file_number;
    FileType type;
    if (ParseFileName(filename, &file_number, &type) && type == kOptionsFile) {
      options_filenames.insert(
          {std::numeric_limits<uint64_t>::max() - file_number,
           GetName() + "/" + filename});
    }
  }

  // Keeps the latest 2 Options file
  const size_t kNumOptionsFilesKept = 2;
  DeleteOptionsFilesHelper(options_filenames, kNumOptionsFilesKept,
3322
                           immutable_db_options_.info_log, GetEnv());
3323 3324 3325 3326 3327 3328 3329 3330 3331
  return Status::OK();
#else
  return Status::OK();
#endif  // !ROCKSDB_LITE
}

Status DBImpl::RenameTempFileToOptionsFile(const std::string& file_name) {
#ifndef ROCKSDB_LITE
  Status s;
W
Wanning Jiang 已提交
3332

3333
  uint64_t options_file_number = versions_->NewFileNumber();
3334
  std::string options_file_name =
3335
      OptionsFileName(GetName(), options_file_number);
3336 3337
  // Retry if the file name happen to conflict with an existing one.
  s = GetEnv()->RenameFile(file_name, options_file_name);
3338 3339 3340 3341
  if (s.ok()) {
    InstrumentedMutexLock l(&mutex_);
    versions_->options_file_number_ = options_file_number;
  }
3342

3343 3344 3345
  if (0 == disable_delete_obsolete_files_) {
    DeleteObsoleteOptionsFiles();
  }
3346 3347
  return s;
#else
3348
  (void)file_name;
3349 3350 3351 3352
  return Status::OK();
#endif  // !ROCKSDB_LITE
}

D
Daniel Black 已提交
3353
#ifdef ROCKSDB_USING_THREAD_STATUS
3354

3355
void DBImpl::NewThreadStatusCfInfo(ColumnFamilyData* cfd) const {
3356
  if (immutable_db_options_.enable_thread_tracking) {
3357 3358
    ThreadStatusUtil::NewColumnFamilyInfo(this, cfd, cfd->GetName(),
                                          cfd->ioptions()->env);
3359
  }
Y
Yueh-Hsuan Chiang 已提交
3360 3361
}

3362
void DBImpl::EraseThreadStatusCfInfo(ColumnFamilyData* cfd) const {
3363
  if (immutable_db_options_.enable_thread_tracking) {
3364
    ThreadStatusUtil::EraseColumnFamilyInfo(cfd);
3365
  }
Y
Yueh-Hsuan Chiang 已提交
3366 3367 3368
}

void DBImpl::EraseThreadStatusDbInfo() const {
3369
  if (immutable_db_options_.enable_thread_tracking) {
3370
    ThreadStatusUtil::EraseDatabaseInfo(this);
3371
  }
Y
Yueh-Hsuan Chiang 已提交
3372 3373 3374
}

#else
3375
void DBImpl::NewThreadStatusCfInfo(ColumnFamilyData* /*cfd*/) const {}
Y
Yueh-Hsuan Chiang 已提交
3376

3377
void DBImpl::EraseThreadStatusCfInfo(ColumnFamilyData* /*cfd*/) const {}
Y
Yueh-Hsuan Chiang 已提交
3378

3379
void DBImpl::EraseThreadStatusDbInfo() const {}
Y
Yueh-Hsuan Chiang 已提交
3380 3381
#endif  // ROCKSDB_USING_THREAD_STATUS

3382 3383
//
// A global method that can dump out the build version
3384
void DumpRocksDBBuildVersion(Logger* log) {
I
Igor Canadi 已提交
3385
#if !defined(IOS_CROSS_COMPILE)
H
hyunwoo 已提交
3386
  // if we compile with Xcode, we don't run build_detect_version, so we don't
I
Igor Canadi 已提交
3387
  // generate util/build_version.cc
3388 3389 3390 3391
  ROCKS_LOG_HEADER(log, "RocksDB version: %d.%d.%d\n", ROCKSDB_MAJOR,
                   ROCKSDB_MINOR, ROCKSDB_PATCH);
  ROCKS_LOG_HEADER(log, "Git sha %s", rocksdb_build_git_sha);
  ROCKS_LOG_HEADER(log, "Compile date %s", rocksdb_build_compile_date);
3392
#else
3393
  (void)log;  // ignore "-Wunused-parameter"
I
Igor Canadi 已提交
3394
#endif
3395 3396
}

A
agiardullo 已提交
3397 3398 3399 3400 3401 3402 3403 3404 3405 3406 3407 3408 3409 3410 3411 3412 3413
#ifndef ROCKSDB_LITE
SequenceNumber DBImpl::GetEarliestMemTableSequenceNumber(SuperVersion* sv,
                                                         bool include_history) {
  // Find the earliest sequence number that we know we can rely on reading
  // from the memtable without needing to check sst files.
  SequenceNumber earliest_seq =
      sv->imm->GetEarliestSequenceNumber(include_history);
  if (earliest_seq == kMaxSequenceNumber) {
    earliest_seq = sv->mem->GetEarliestSequenceNumber();
  }
  assert(sv->mem->GetEarliestSequenceNumber() >= earliest_seq);

  return earliest_seq;
}
#endif  // ROCKSDB_LITE

#ifndef ROCKSDB_LITE
3414 3415
Status DBImpl::GetLatestSequenceForKey(SuperVersion* sv, const Slice& key,
                                       bool cache_only, SequenceNumber* seq,
3416 3417
                                       bool* found_record_for_key,
                                       bool* is_blob_index) {
A
agiardullo 已提交
3418 3419
  Status s;
  MergeContext merge_context;
3420
  SequenceNumber max_covering_tombstone_seq = 0;
A
agiardullo 已提交
3421

A
Andrew Kryczka 已提交
3422
  ReadOptions read_options;
A
agiardullo 已提交
3423 3424 3425 3426
  SequenceNumber current_seq = versions_->LastSequence();
  LookupKey lkey(key, current_seq);

  *seq = kMaxSequenceNumber;
3427 3428
  *found_record_for_key = false;

A
agiardullo 已提交
3429
  // Check if there is a record for this key in the latest memtable
3430 3431
  sv->mem->Get(lkey, nullptr, &s, &merge_context, &max_covering_tombstone_seq,
               seq, read_options, nullptr /*read_callback*/, is_blob_index);
A
agiardullo 已提交
3432 3433 3434

  if (!(s.ok() || s.IsNotFound() || s.IsMergeInProgress())) {
    // unexpected error reading memtable.
3435 3436 3437
    ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                    "Unexpected status returned from MemTable::Get: %s\n",
                    s.ToString().c_str());
A
agiardullo 已提交
3438 3439 3440 3441 3442 3443

    return s;
  }

  if (*seq != kMaxSequenceNumber) {
    // Found a sequence number, no need to check immutable memtables
3444
    *found_record_for_key = true;
A
agiardullo 已提交
3445 3446 3447 3448
    return Status::OK();
  }

  // Check if there is a record for this key in the immutable memtables
3449 3450
  sv->imm->Get(lkey, nullptr, &s, &merge_context, &max_covering_tombstone_seq,
               seq, read_options, nullptr /*read_callback*/, is_blob_index);
A
agiardullo 已提交
3451 3452 3453

  if (!(s.ok() || s.IsNotFound() || s.IsMergeInProgress())) {
    // unexpected error reading memtable.
3454 3455 3456
    ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                    "Unexpected status returned from MemTableList::Get: %s\n",
                    s.ToString().c_str());
A
agiardullo 已提交
3457 3458 3459 3460 3461 3462

    return s;
  }

  if (*seq != kMaxSequenceNumber) {
    // Found a sequence number, no need to check memtable history
3463
    *found_record_for_key = true;
A
agiardullo 已提交
3464 3465 3466 3467
    return Status::OK();
  }

  // Check if there is a record for this key in the immutable memtables
3468 3469 3470
  sv->imm->GetFromHistory(lkey, nullptr, &s, &merge_context,
                          &max_covering_tombstone_seq, seq, read_options,
                          is_blob_index);
A
agiardullo 已提交
3471 3472 3473

  if (!(s.ok() || s.IsNotFound() || s.IsMergeInProgress())) {
    // unexpected error reading memtable.
3474 3475
    ROCKS_LOG_ERROR(
        immutable_db_options_.info_log,
A
agiardullo 已提交
3476 3477 3478 3479 3480 3481
        "Unexpected status returned from MemTableList::GetFromHistory: %s\n",
        s.ToString().c_str());

    return s;
  }

3482 3483 3484 3485 3486 3487 3488 3489 3490 3491
  if (*seq != kMaxSequenceNumber) {
    // Found a sequence number, no need to check SST files
    *found_record_for_key = true;
    return Status::OK();
  }

  // TODO(agiardullo): possible optimization: consider checking cached
  // SST files if cache_only=true?
  if (!cache_only) {
    // Check tables
R
Reid Horuff 已提交
3492
    sv->current->Get(read_options, lkey, nullptr, &s, &merge_context,
3493
                     &max_covering_tombstone_seq, nullptr /* value_found */,
3494 3495
                     found_record_for_key, seq, nullptr /*read_callback*/,
                     is_blob_index);
3496 3497 3498

    if (!(s.ok() || s.IsNotFound() || s.IsMergeInProgress())) {
      // unexpected error reading SST files
3499 3500 3501
      ROCKS_LOG_ERROR(immutable_db_options_.info_log,
                      "Unexpected status returned from Version::Get: %s\n",
                      s.ToString().c_str());
3502 3503 3504
    }
  }

3505
  return s;
A
agiardullo 已提交
3506
}
3507 3508 3509 3510 3511

Status DBImpl::IngestExternalFile(
    ColumnFamilyHandle* column_family,
    const std::vector<std::string>& external_files,
    const IngestExternalFileOptions& ingestion_options) {
Y
Yanqin Jin 已提交
3512 3513 3514 3515 3516 3517
  IngestExternalFileArg arg;
  arg.column_family = column_family;
  arg.external_files = external_files;
  arg.options = ingestion_options;
  return IngestExternalFiles({arg});
}
3518

Y
Yanqin Jin 已提交
3519 3520 3521 3522 3523 3524 3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537 3538 3539 3540 3541 3542 3543 3544 3545 3546 3547 3548
Status DBImpl::IngestExternalFiles(
    const std::vector<IngestExternalFileArg>& args) {
  if (args.empty()) {
    return Status::InvalidArgument("ingestion arg list is empty");
  }
  {
    std::unordered_set<ColumnFamilyHandle*> unique_cfhs;
    for (const auto& arg : args) {
      if (arg.column_family == nullptr) {
        return Status::InvalidArgument("column family handle is null");
      } else if (unique_cfhs.count(arg.column_family) > 0) {
        return Status::InvalidArgument(
            "ingestion args have duplicate column families");
      }
      unique_cfhs.insert(arg.column_family);
    }
  }
  // Ingest multiple external SST files atomically.
  size_t num_cfs = args.size();
  for (size_t i = 0; i != num_cfs; ++i) {
    if (args[i].external_files.empty()) {
      char err_msg[128] = {0};
      snprintf(err_msg, 128, "external_files[%zu] is empty", i);
      return Status::InvalidArgument(err_msg);
    }
  }
  for (const auto& arg : args) {
    const IngestExternalFileOptions& ingest_opts = arg.options;
    if (ingest_opts.ingest_behind &&
        !immutable_db_options_.allow_ingest_behind) {
3549
      return Status::InvalidArgument(
Y
Yanqin Jin 已提交
3550
          "can't ingest_behind file in DB with allow_ingest_behind=false");
3551 3552 3553
    }
  }

Y
Yanqin Jin 已提交
3554 3555
  // TODO (yanqin) maybe handle the case in which column_families have
  // duplicates
3556
  std::list<uint64_t>::iterator pending_output_elem;
Y
Yanqin Jin 已提交
3557 3558 3559
  size_t total = 0;
  for (const auto& arg : args) {
    total += arg.external_files.size();
3560
  }
Y
Yanqin Jin 已提交
3561 3562 3563 3564
  uint64_t next_file_number = 0;
  Status status = ReserveFileNumbersBeforeIngestion(
      static_cast<ColumnFamilyHandleImpl*>(args[0].column_family)->cfd(), total,
      &pending_output_elem, &next_file_number);
3565
  if (!status.ok()) {
3566 3567
    InstrumentedMutexLock l(&mutex_);
    ReleaseFileNumberFromPendingOutputs(pending_output_elem);
3568
    return status;
3569 3570
  }

Y
Yanqin Jin 已提交
3571 3572 3573 3574 3575 3576 3577 3578 3579 3580 3581 3582 3583 3584 3585 3586 3587 3588 3589 3590 3591 3592 3593 3594 3595 3596 3597 3598 3599 3600 3601 3602 3603 3604 3605 3606 3607 3608 3609 3610
  std::vector<ExternalSstFileIngestionJob> ingestion_jobs;
  for (const auto& arg : args) {
    auto* cfd = static_cast<ColumnFamilyHandleImpl*>(arg.column_family)->cfd();
    ingestion_jobs.emplace_back(env_, versions_.get(), cfd,
                                immutable_db_options_, env_options_,
                                &snapshots_, arg.options);
  }
  std::vector<std::pair<bool, Status>> exec_results;
  for (size_t i = 0; i != num_cfs; ++i) {
    exec_results.emplace_back(false, Status::OK());
  }
  // TODO(yanqin) maybe make jobs run in parallel
  for (size_t i = 1; i != num_cfs; ++i) {
    uint64_t start_file_number =
        next_file_number + args[i - 1].external_files.size();
    auto* cfd =
        static_cast<ColumnFamilyHandleImpl*>(args[i].column_family)->cfd();
    SuperVersion* super_version = cfd->GetReferencedSuperVersion(&mutex_);
    exec_results[i].second = ingestion_jobs[i].Prepare(
        args[i].external_files, start_file_number, super_version);
    exec_results[i].first = true;
    CleanupSuperVersion(super_version);
  }
  TEST_SYNC_POINT("DBImpl::IngestExternalFiles:BeforeLastJobPrepare:0");
  TEST_SYNC_POINT("DBImpl::IngestExternalFiles:BeforeLastJobPrepare:1");
  {
    auto* cfd =
        static_cast<ColumnFamilyHandleImpl*>(args[0].column_family)->cfd();
    SuperVersion* super_version = cfd->GetReferencedSuperVersion(&mutex_);
    exec_results[0].second = ingestion_jobs[0].Prepare(
        args[0].external_files, next_file_number, super_version);
    exec_results[0].first = true;
    CleanupSuperVersion(super_version);
  }
  for (const auto& exec_result : exec_results) {
    if (!exec_result.second.ok()) {
      status = exec_result.second;
      break;
    }
  }
3611
  if (!status.ok()) {
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    for (size_t i = 0; i != num_cfs; ++i) {
      if (exec_results[i].first) {
        ingestion_jobs[i].Cleanup(status);
      }
    }
3617
    InstrumentedMutexLock l(&mutex_);
3618
    ReleaseFileNumberFromPendingOutputs(pending_output_elem);
3619 3620 3621
    return status;
  }

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  std::vector<SuperVersionContext> sv_ctxs;
  for (size_t i = 0; i != num_cfs; ++i) {
    sv_ctxs.emplace_back(true /* create_superversion */);
  }
  TEST_SYNC_POINT("DBImpl::IngestExternalFiles:BeforeJobsRun:0");
  TEST_SYNC_POINT("DBImpl::IngestExternalFiles:BeforeJobsRun:1");
3628
  TEST_SYNC_POINT("DBImpl::AddFile:Start");
3629 3630 3631 3632
  {
    InstrumentedMutexLock l(&mutex_);
    TEST_SYNC_POINT("DBImpl::AddFile:MutexLock");

3633
    // Stop writes to the DB by entering both write threads
3634 3635
    WriteThread::Writer w;
    write_thread_.EnterUnbatched(&w, &mutex_);
3636
    WriteThread::Writer nonmem_w;
3637
    if (two_write_queues_) {
3638 3639
      nonmem_write_thread_.EnterUnbatched(&nonmem_w, &mutex_);
    }
3640

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    num_running_ingest_file_ += static_cast<int>(num_cfs);
3642
    TEST_SYNC_POINT("DBImpl::IngestExternalFile:AfterIncIngestFileCounter");
3643

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    bool at_least_one_cf_need_flush = false;
    std::vector<bool> need_flush(num_cfs, false);
    for (size_t i = 0; i != num_cfs; ++i) {
      auto* cfd =
          static_cast<ColumnFamilyHandleImpl*>(args[i].column_family)->cfd();
      if (cfd->IsDropped()) {
        // TODO (yanqin) investigate whether we should abort ingestion or
        // proceed with other non-dropped column families.
        status = Status::InvalidArgument(
            "cannot ingest an external file into a dropped CF");
        break;
      }
      bool tmp = false;
      status = ingestion_jobs[i].NeedsFlush(&tmp, cfd->GetSuperVersion());
      need_flush[i] = tmp;
      at_least_one_cf_need_flush = (at_least_one_cf_need_flush || tmp);
      if (!status.ok()) {
        break;
      }
3663
    }
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    TEST_SYNC_POINT_CALLBACK("DBImpl::IngestExternalFile:NeedFlush",
                             &at_least_one_cf_need_flush);
3666

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    if (status.ok() && at_least_one_cf_need_flush) {
      FlushOptions flush_opts;
      flush_opts.allow_write_stall = true;
      if (immutable_db_options_.atomic_flush) {
        autovector<ColumnFamilyData*> cfds_to_flush;
        SelectColumnFamiliesForAtomicFlush(&cfds_to_flush);
        mutex_.Unlock();
        status = AtomicFlushMemTables(cfds_to_flush, flush_opts,
                                      FlushReason::kExternalFileIngestion,
                                      true /* writes_stopped */);
3677
        mutex_.Lock();
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      } else {
        for (size_t i = 0; i != num_cfs; ++i) {
          if (need_flush[i]) {
            mutex_.Unlock();
            auto* cfd =
                static_cast<ColumnFamilyHandleImpl*>(args[i].column_family)
                    ->cfd();
            status = FlushMemTable(cfd, flush_opts,
                                   FlushReason::kExternalFileIngestion,
                                   true /* writes_stopped */);
            mutex_.Lock();
            if (!status.ok()) {
              break;
            }
          }
        }
3694
      }
3695
    }
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    // Run ingestion jobs.
3697
    if (status.ok()) {
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      for (size_t i = 0; i != num_cfs; ++i) {
        status = ingestion_jobs[i].Run();
        if (!status.ok()) {
          break;
        }
      }
3704 3705
    }
    if (status.ok()) {
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      bool should_increment_last_seqno =
          ingestion_jobs[0].ShouldIncrementLastSequence();
#ifndef NDEBUG
      for (size_t i = 1; i != num_cfs; ++i) {
        assert(should_increment_last_seqno ==
               ingestion_jobs[i].ShouldIncrementLastSequence());
      }
#endif
      if (should_increment_last_seqno) {
        const SequenceNumber last_seqno = versions_->LastSequence();
        versions_->SetLastAllocatedSequence(last_seqno + 1);
        versions_->SetLastPublishedSequence(last_seqno + 1);
        versions_->SetLastSequence(last_seqno + 1);
      }
      autovector<ColumnFamilyData*> cfds_to_commit;
      autovector<const MutableCFOptions*> mutable_cf_options_list;
      autovector<autovector<VersionEdit*>> edit_lists;
      uint32_t num_entries = 0;
      for (size_t i = 0; i != num_cfs; ++i) {
        auto* cfd =
            static_cast<ColumnFamilyHandleImpl*>(args[i].column_family)->cfd();
        if (cfd->IsDropped()) {
          continue;
        }
        cfds_to_commit.push_back(cfd);
        mutable_cf_options_list.push_back(cfd->GetLatestMutableCFOptions());
        autovector<VersionEdit*> edit_list;
        edit_list.push_back(ingestion_jobs[i].edit());
        edit_lists.push_back(edit_list);
        ++num_entries;
      }
3737 3738 3739 3740 3741 3742 3743 3744
      // Mark the version edits as an atomic group if the number of version
      // edits exceeds 1.
      if (cfds_to_commit.size() > 1) {
        for (auto& edits : edit_lists) {
          assert(edits.size() == 1);
          edits[0]->MarkAtomicGroup(--num_entries);
        }
        assert(0 == num_entries);
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      }
3746
      status =
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          versions_->LogAndApply(cfds_to_commit, mutable_cf_options_list,
                                 edit_lists, &mutex_, directories_.GetDbDir());
3749
    }
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3751
    if (status.ok()) {
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      for (size_t i = 0; i != num_cfs; ++i) {
        auto* cfd =
            static_cast<ColumnFamilyHandleImpl*>(args[i].column_family)->cfd();
        if (!cfd->IsDropped()) {
          InstallSuperVersionAndScheduleWork(cfd, &sv_ctxs[i],
                                             *cfd->GetLatestMutableCFOptions());
#ifndef NDEBUG
          if (0 == i && num_cfs > 1) {
            TEST_SYNC_POINT(
                "DBImpl::IngestExternalFiles:InstallSVForFirstCF:0");
            TEST_SYNC_POINT(
                "DBImpl::IngestExternalFiles:InstallSVForFirstCF:1");
          }
#endif  // !NDEBUG
        }
      }
3768 3769 3770
    }

    // Resume writes to the DB
3771
    if (two_write_queues_) {
3772 3773
      nonmem_write_thread_.ExitUnbatched(&nonmem_w);
    }
3774 3775 3776
    write_thread_.ExitUnbatched(&w);

    if (status.ok()) {
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      for (auto& job : ingestion_jobs) {
        job.UpdateStats();
      }
3780 3781
    }
    ReleaseFileNumberFromPendingOutputs(pending_output_elem);
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    num_running_ingest_file_ -= static_cast<int>(num_cfs);
    if (0 == num_running_ingest_file_) {
3784 3785 3786 3787 3788 3789 3790
      bg_cv_.SignalAll();
    }
    TEST_SYNC_POINT("DBImpl::AddFile:MutexUnlock");
  }
  // mutex_ is unlocked here

  // Cleanup
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  for (size_t i = 0; i != num_cfs; ++i) {
    sv_ctxs[i].Clean();
    // This may rollback jobs that have completed successfully. This is
    // intended for atomicity.
    ingestion_jobs[i].Cleanup(status);
  }
3797
  if (status.ok()) {
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    for (size_t i = 0; i != num_cfs; ++i) {
      auto* cfd =
          static_cast<ColumnFamilyHandleImpl*>(args[i].column_family)->cfd();
      if (!cfd->IsDropped()) {
        NotifyOnExternalFileIngested(cfd, ingestion_jobs[i]);
      }
    }
3805
  }
3806 3807 3808
  return status;
}

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Status DBImpl::VerifyChecksum() {
  Status s;
  std::vector<ColumnFamilyData*> cfd_list;
  {
    InstrumentedMutexLock l(&mutex_);
    for (auto cfd : *versions_->GetColumnFamilySet()) {
      if (!cfd->IsDropped() && cfd->initialized()) {
        cfd->Ref();
        cfd_list.push_back(cfd);
      }
    }
  }
  std::vector<SuperVersion*> sv_list;
  for (auto cfd : cfd_list) {
    sv_list.push_back(cfd->GetReferencedSuperVersion(&mutex_));
  }
  for (auto& sv : sv_list) {
    VersionStorageInfo* vstorage = sv->current->storage_info();
3827
    ColumnFamilyData* cfd = sv->current->cfd();
3828 3829 3830
    Options opts;
    {
      InstrumentedMutexLock l(&mutex_);
3831 3832
      opts = Options(BuildDBOptions(immutable_db_options_, mutable_db_options_),
                     cfd->GetLatestCFOptions());
3833
    }
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    for (int i = 0; i < vstorage->num_non_empty_levels() && s.ok(); i++) {
      for (size_t j = 0; j < vstorage->LevelFilesBrief(i).num_files && s.ok();
           j++) {
        const auto& fd = vstorage->LevelFilesBrief(i).files[j].fd;
3838
        std::string fname = TableFileName(cfd->ioptions()->cf_paths,
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                                          fd.GetNumber(), fd.GetPathId());
3840
        s = rocksdb::VerifySstFileChecksum(opts, env_options_, fname);
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      }
    }
    if (!s.ok()) {
      break;
    }
  }
  {
    InstrumentedMutexLock l(&mutex_);
    for (auto sv : sv_list) {
      if (sv && sv->Unref()) {
        sv->Cleanup();
        delete sv;
      }
    }
    for (auto cfd : cfd_list) {
3856
      cfd->Unref();
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    }
  }
  return s;
}

3862 3863 3864 3865 3866 3867 3868 3869 3870 3871 3872 3873 3874 3875 3876 3877 3878 3879 3880
void DBImpl::NotifyOnExternalFileIngested(
    ColumnFamilyData* cfd, const ExternalSstFileIngestionJob& ingestion_job) {
  if (immutable_db_options_.listeners.empty()) {
    return;
  }

  for (const IngestedFileInfo& f : ingestion_job.files_to_ingest()) {
    ExternalFileIngestionInfo info;
    info.cf_name = cfd->GetName();
    info.external_file_path = f.external_file_path;
    info.internal_file_path = f.internal_file_path;
    info.global_seqno = f.assigned_seqno;
    info.table_properties = f.table_properties;
    for (auto listener : immutable_db_options_.listeners) {
      listener->OnExternalFileIngested(this, info);
    }
  }
}

3881 3882 3883 3884 3885 3886 3887
void DBImpl::WaitForIngestFile() {
  mutex_.AssertHeld();
  while (num_running_ingest_file_ > 0) {
    bg_cv_.Wait();
  }
}

3888
Status DBImpl::StartTrace(const TraceOptions& trace_options,
3889 3890
                          std::unique_ptr<TraceWriter>&& trace_writer) {
  InstrumentedMutexLock lock(&trace_mutex_);
3891
  tracer_.reset(new Tracer(env_, trace_options, std::move(trace_writer)));
3892 3893 3894 3895 3896
  return Status::OK();
}

Status DBImpl::EndTrace() {
  InstrumentedMutexLock lock(&trace_mutex_);
3897 3898 3899 3900 3901 3902 3903
  Status s;
  if (tracer_ != nullptr) {
    s = tracer_->Close();
    tracer_.reset();
  } else {
    return Status::IOError("No trace file to close");
  }
3904 3905 3906
  return s;
}

3907 3908 3909 3910 3911 3912 3913 3914 3915 3916 3917
Status DBImpl::TraceIteratorSeek(const uint32_t& cf_id, const Slice& key) {
  Status s;
  if (tracer_) {
    InstrumentedMutexLock lock(&trace_mutex_);
    if (tracer_) {
      s = tracer_->IteratorSeek(cf_id, key);
    }
  }
  return s;
}

3918 3919
Status DBImpl::TraceIteratorSeekForPrev(const uint32_t& cf_id,
                                        const Slice& key) {
3920 3921 3922 3923 3924 3925 3926 3927 3928 3929
  Status s;
  if (tracer_) {
    InstrumentedMutexLock lock(&trace_mutex_);
    if (tracer_) {
      s = tracer_->IteratorSeekForPrev(cf_id, key);
    }
  }
  return s;
}

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Status DBImpl::ReserveFileNumbersBeforeIngestion(
    ColumnFamilyData* cfd, uint64_t num,
    std::list<uint64_t>::iterator* pending_output_elem,
    uint64_t* next_file_number) {
  Status s;
  SuperVersionContext dummy_sv_ctx(true /* create_superversion */);
  assert(nullptr != pending_output_elem);
  assert(nullptr != next_file_number);
  InstrumentedMutexLock l(&mutex_);
  if (error_handler_.IsDBStopped()) {
    // Do not ingest files when there is a bg_error
    return error_handler_.GetBGError();
  }
  *pending_output_elem = CaptureCurrentFileNumberInPendingOutputs();
  *next_file_number = versions_->FetchAddFileNumber(static_cast<uint64_t>(num));
  auto cf_options = cfd->GetLatestMutableCFOptions();
  VersionEdit dummy_edit;
  // If crash happen after a hard link established, Recover function may
  // reuse the file number that has already assigned to the internal file,
  // and this will overwrite the external file. To protect the external
  // file, we have to make sure the file number will never being reused.
  s = versions_->LogAndApply(cfd, *cf_options, &dummy_edit, &mutex_,
                             directories_.GetDbDir());
  if (s.ok()) {
    InstallSuperVersionAndScheduleWork(cfd, &dummy_sv_ctx, *cf_options);
  }
  dummy_sv_ctx.Clean();
  return s;
}
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#endif  // ROCKSDB_LITE
3960

3961
}  // namespace rocksdb