db_impl.cc 123.3 KB
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//  Copyright (c) 2013, Facebook, Inc.  All rights reserved.
//  This source code is licensed under the BSD-style license found in the
//  LICENSE file in the root directory of this source tree. An additional grant
//  of patent rights can be found in the PATENTS file in the same directory.
//
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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.

#include "db/db_impl.h"

#include <algorithm>
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#include <climits>
#include <cstdio>
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#include <set>
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#include <stdexcept>
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#include <stdint.h>
#include <string>
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#include <unordered_set>
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#include <vector>
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#include "db/builder.h"
#include "db/dbformat.h"
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#include "db/db_iter.h"
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#include "db/filename.h"
#include "db/log_reader.h"
#include "db/log_writer.h"
#include "db/memtable.h"
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#include "db/memtablelist.h"
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#include "db/merge_helper.h"
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#include "db/prefix_filter_iterator.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 "port/port.h"
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#include "rocksdb/compaction_filter.h"
#include "rocksdb/db.h"
#include "rocksdb/env.h"
#include "rocksdb/merge_operator.h"
#include "rocksdb/statistics.h"
#include "rocksdb/status.h"
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#include "rocksdb/table.h"
#include "port/port.h"
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#include "table/block.h"
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#include "table/block_based_table_factory.h"
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#include "table/merger.h"
#include "table/two_level_iterator.h"
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#include "util/auto_roll_logger.h"
#include "util/build_version.h"
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#include "util/coding.h"
#include "util/logging.h"
#include "util/mutexlock.h"
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#include "util/perf_context_imp.h"
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#include "util/stop_watch.h"
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namespace rocksdb {
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void dumpLeveldbBuildVersion(Logger * log);

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// Information kept for every waiting writer
struct DBImpl::Writer {
  Status status;
  WriteBatch* batch;
  bool sync;
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  bool disableWAL;
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  bool done;
  port::CondVar cv;

  explicit Writer(port::Mutex* mu) : cv(mu) { }
};

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struct DBImpl::CompactionState {
  Compaction* const compaction;

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  // If there were two snapshots with seq numbers s1 and
  // s2 and s1 < s2, and if we find two instances of a key k1 then lies
  // entirely within s1 and s2, then the earlier version of k1 can be safely
  // deleted because that version is not visible in any snapshot.
  std::vector<SequenceNumber> existing_snapshots;
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  // Files produced by compaction
  struct Output {
    uint64_t number;
    uint64_t file_size;
    InternalKey smallest, largest;
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    SequenceNumber smallest_seqno, largest_seqno;
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  };
  std::vector<Output> outputs;
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  std::list<uint64_t> allocated_file_numbers;
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  // State kept for output being generated
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  unique_ptr<WritableFile> outfile;
  unique_ptr<TableBuilder> builder;
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  uint64_t total_bytes;

  Output* current_output() { return &outputs[outputs.size()-1]; }

  explicit CompactionState(Compaction* c)
      : compaction(c),
        total_bytes(0) {
  }
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  // Create a client visible context of this compaction
  CompactionFilter::Context GetFilterContext() {
    CompactionFilter::Context context;
    context.is_full_compaction = compaction->IsFullCompaction();
    return context;
  }
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};

// Fix user-supplied options to be reasonable
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template <class T, class V>
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static void ClipToRange(T* ptr, V minvalue, V maxvalue) {
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  if (static_cast<V>(*ptr) > maxvalue) *ptr = maxvalue;
  if (static_cast<V>(*ptr) < minvalue) *ptr = minvalue;
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}
Options SanitizeOptions(const std::string& dbname,
                        const InternalKeyComparator* icmp,
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                        const InternalFilterPolicy* ipolicy,
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                        const Options& src) {
  Options result = src;
  result.comparator = icmp;
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  result.filter_policy = (src.filter_policy != nullptr) ? ipolicy : nullptr;
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  ClipToRange(&result.max_open_files,            20,     1000000);
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  ClipToRange(&result.write_buffer_size,         ((size_t)64)<<10,
                                                 ((size_t)64)<<30);
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  ClipToRange(&result.block_size,                1<<10,  4<<20);
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  // if user sets arena_block_size, we trust user to use this value. Otherwise,
  // calculate a proper value from writer_buffer_size;
  if (result.arena_block_size <= 0) {
    result.arena_block_size = result.write_buffer_size / 10;
  }

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  result.min_write_buffer_number_to_merge = std::min(
    result.min_write_buffer_number_to_merge, result.max_write_buffer_number-1);
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  if (result.info_log == nullptr) {
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    Status s = CreateLoggerFromOptions(dbname, result.db_log_dir, src.env,
                                       result, &result.info_log);
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    if (!s.ok()) {
      // No place suitable for logging
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      result.info_log = nullptr;
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    }
  }
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  if (result.block_cache == nullptr && !result.no_block_cache) {
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    result.block_cache = NewLRUCache(8 << 20);
  }
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  result.compression_per_level = src.compression_per_level;
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  if (result.block_size_deviation < 0 || result.block_size_deviation > 100) {
    result.block_size_deviation = 0;
  }
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  if (result.max_mem_compaction_level >= result.num_levels) {
    result.max_mem_compaction_level = result.num_levels - 1;
  }
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  if (result.soft_rate_limit > result.hard_rate_limit) {
    result.soft_rate_limit = result.hard_rate_limit;
  }
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  if (result.compaction_filter) {
    Log(result.info_log, "Compaction filter specified, ignore factory");
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  }
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  if (result.prefix_extractor) {
    // If a prefix extractor has been supplied and a PrefixHashRepFactory is
    // being used, make sure that the latter uses the former as its transform
    // function.
    auto factory = dynamic_cast<PrefixHashRepFactory*>(
      result.memtable_factory.get());
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    if (factory &&
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        factory->GetTransform() != result.prefix_extractor) {
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      Log(result.info_log, "A prefix hash representation factory was supplied "
          "whose prefix extractor does not match options.prefix_extractor. "
          "Falling back to skip list representation factory");
      result.memtable_factory = std::make_shared<SkipListFactory>();
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    } else if (factory) {
      Log(result.info_log, "Prefix hash memtable rep is in use.");
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    }
  }
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  if (result.wal_dir.empty()) {
    // Use dbname as default
    result.wal_dir = dbname;
  }
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  // -- Sanitize the table properties collector
  // All user defined properties collectors will be wrapped by
  // UserKeyTablePropertiesCollector since for them they only have the
  // knowledge of the user keys; internal keys are invisible to them.
  auto& collectors = result.table_properties_collectors;
  for (size_t i = 0; i < result.table_properties_collectors.size(); ++i) {
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    assert(collectors[i]);
    collectors[i] =
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      std::make_shared<UserKeyTablePropertiesCollector>(collectors[i]);
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  }

  // Add collector to collect internal key statistics
  collectors.push_back(
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      std::make_shared<InternalKeyPropertiesCollector>()
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  );

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  return result;
}

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CompressionType GetCompressionType(const Options& options, int level,
                                   const bool enable_compression) {
  if (!enable_compression) {
    // disable compression
    return kNoCompression;
  }
  // If the use has specified a different compression level for each level,
  // then pick the compresison for that level.
  if (!options.compression_per_level.empty()) {
    const int n = options.compression_per_level.size() - 1;
    // It is possible for level_ to be -1; in that case, we use level
    // 0's compression.  This occurs mostly in backwards compatibility
    // situations when the builder doesn't know what level the file
    // belongs to.  Likewise, if level_ is beyond the end of the
    // specified compression levels, use the last value.
    return options.compression_per_level[std::max(0, std::min(level, n))];
  } else {
    return options.compression;
  }
}

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DBImpl::DBImpl(const Options& options, const std::string& dbname)
    : env_(options.env),
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      dbname_(dbname),
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      internal_comparator_(options.comparator),
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      options_(SanitizeOptions(
          dbname, &internal_comparator_, &internal_filter_policy_, options)),
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      internal_filter_policy_(options.filter_policy),
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      owns_info_log_(options_.info_log != options.info_log),
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      db_lock_(nullptr),
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      mutex_(options.use_adaptive_mutex),
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      shutting_down_(nullptr),
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      bg_cv_(&mutex_),
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      mem_rep_factory_(options_.memtable_factory),
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      mem_(new MemTable(internal_comparator_, mem_rep_factory_,
        NumberLevels(), options_)),
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      logfile_number_(0),
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      tmp_batch_(),
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      bg_compaction_scheduled_(0),
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      bg_flush_scheduled_(0),
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      bg_logstats_scheduled_(false),
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      manual_compaction_(nullptr),
      logger_(nullptr),
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      disable_delete_obsolete_files_(false),
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      delete_obsolete_files_last_run_(options.env->NowMicros()),
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      purge_wal_files_last_run_(0),
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      last_stats_dump_time_microsec_(0),
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      default_interval_to_delete_obsolete_WAL_(600),
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      stall_level0_slowdown_(0),
      stall_memtable_compaction_(0),
      stall_level0_num_files_(0),
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      stall_level0_slowdown_count_(0),
      stall_memtable_compaction_count_(0),
      stall_level0_num_files_count_(0),
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      started_at_(options.env->NowMicros()),
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      flush_on_destroy_(false),
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      stats_(options.num_levels),
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      delayed_writes_(0),
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      storage_options_(options),
      bg_work_gate_closed_(false),
      refitting_level_(false) {
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  mem_->Ref();
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  env_->GetAbsolutePath(dbname, &db_absolute_path_);
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  stall_leveln_slowdown_.resize(options.num_levels);
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  stall_leveln_slowdown_count_.resize(options.num_levels);
  for (int i = 0; i < options.num_levels; ++i) {
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    stall_leveln_slowdown_[i] = 0;
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    stall_leveln_slowdown_count_[i] = 0;
  }
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  // Reserve ten files or so for other uses and give the rest to TableCache.
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  const int table_cache_size = options_.max_open_files - 10;
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  table_cache_.reset(new TableCache(dbname_, &options_,
                                    storage_options_, table_cache_size));
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  versions_.reset(new VersionSet(dbname_, &options_, storage_options_,
                                 table_cache_.get(), &internal_comparator_));
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  dumpLeveldbBuildVersion(options_.info_log.get());
  options_.Dump(options_.info_log.get());
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  char name[100];
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  Status st = env_->GetHostName(name, 100L);
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  if (st.ok()) {
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    host_name_ = name;
  } else {
    Log(options_.info_log, "Can't get hostname, use localhost as host name.");
    host_name_ = "localhost";
  }
  last_log_ts = 0;
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  LogFlush(options_.info_log);
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}

DBImpl::~DBImpl() {
  // Wait for background work to finish
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  if (flush_on_destroy_ && mem_->GetFirstSequenceNumber() != 0) {
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    FlushMemTable(FlushOptions());
  }
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  mutex_.Lock();
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  shutting_down_.Release_Store(this);  // Any non-nullptr value is ok
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  while (bg_compaction_scheduled_ ||
         bg_flush_scheduled_ ||
         bg_logstats_scheduled_) {
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    bg_cv_.Wait();
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  }
  mutex_.Unlock();

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  if (db_lock_ != nullptr) {
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    env_->UnlockFile(db_lock_);
  }

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  if (mem_ != nullptr) mem_->Unref();
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  imm_.UnrefAll();
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  LogFlush(options_.info_log);
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}

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// Do not flush and close database elegantly. Simulate a crash.
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void DBImpl::TEST_Destroy_DBImpl() {
  // ensure that no new memtable flushes can occur
  flush_on_destroy_ = false;

  // wait till all background compactions are done.
  mutex_.Lock();
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  while (bg_compaction_scheduled_ ||
         bg_flush_scheduled_ ||
         bg_logstats_scheduled_) {
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    bg_cv_.Wait();
  }

  // Prevent new compactions from occuring.
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  bg_work_gate_closed_ = true;
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  const int LargeNumber = 10000000;
  bg_compaction_scheduled_ += LargeNumber;
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  mutex_.Unlock();
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  LogFlush(options_.info_log);
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  // force release the lock file.
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  if (db_lock_ != nullptr) {
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    env_->UnlockFile(db_lock_);
  }
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  log_.reset();
  versions_.reset();
  table_cache_.reset();
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}

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uint64_t DBImpl::TEST_Current_Manifest_FileNo() {
  return versions_->ManifestFileNumber();
}
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Status DBImpl::NewDB() {
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  VersionEdit new_db(NumberLevels());
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  new_db.SetComparatorName(user_comparator()->Name());
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  new_db.SetLogNumber(0);
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  new_db.SetNextFile(2);
  new_db.SetLastSequence(0);

  const std::string manifest = DescriptorFileName(dbname_, 1);
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  unique_ptr<WritableFile> file;
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  Status s = env_->NewWritableFile(manifest, &file, storage_options_);
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  if (!s.ok()) {
    return s;
  }
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  file->SetPreallocationBlockSize(options_.manifest_preallocation_size);
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  {
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    log::Writer log(std::move(file));
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    std::string record;
    new_db.EncodeTo(&record);
    s = log.AddRecord(record);
  }
  if (s.ok()) {
    // Make "CURRENT" file that points to the new manifest file.
    s = SetCurrentFile(env_, dbname_, 1);
  } else {
    env_->DeleteFile(manifest);
  }
  return s;
}

void DBImpl::MaybeIgnoreError(Status* s) const {
  if (s->ok() || options_.paranoid_checks) {
    // No change needed
  } else {
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    Log(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 (options_.WAL_ttl_seconds > 0 || options_.WAL_size_limit_MB > 0) {
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    std::string archivalPath = ArchivalDirectory(options_.wal_dir);
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    return env_->CreateDirIfMissing(archivalPath);
  }
  return Status::OK();
}

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void DBImpl::PrintStatistics() {
  auto dbstats = options_.statistics;
  if (dbstats) {
    Log(options_.info_log,
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        "STATISTCS:\n %s",
        dbstats->ToString().c_str());
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  }
}

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void DBImpl::MaybeDumpStats() {
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  if (options_.stats_dump_period_sec == 0) return;

  const uint64_t now_micros = env_->NowMicros();

  if (last_stats_dump_time_microsec_ +
      options_.stats_dump_period_sec * 1000000
      <= now_micros) {
    // Multiple threads could race in here simultaneously.
    // However, the last one will update last_stats_dump_time_microsec_
    // atomically. We could see more than one dump during one dump
    // period in rare cases.
    last_stats_dump_time_microsec_ = now_micros;
    std::string stats;
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    GetProperty("rocksdb.stats", &stats);
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    Log(options_.info_log, "%s", stats.c_str());
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    PrintStatistics();
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  }
}

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// Returns the list of live files in 'sst_live' and the list
// of all files in the filesystem in 'all_files'.
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// no_full_scan = true -- never do the full scan using GetChildren()
// force = false -- don't force the full scan, except every
//  options_.delete_obsolete_files_period_micros
// force = true -- force the full scan
void DBImpl::FindObsoleteFiles(DeletionState& deletion_state,
                               bool force,
                               bool no_full_scan) {
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  mutex_.AssertHeld();

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  // if deletion is disabled, do nothing
  if (disable_delete_obsolete_files_) {
    return;
  }

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  bool doing_the_full_scan = false;

  // logic for figurint out if we're doing the full scan
  if (no_full_scan) {
    doing_the_full_scan = false;
  } else if (force || options_.delete_obsolete_files_period_micros == 0) {
    doing_the_full_scan = true;
  } else {
    const uint64_t now_micros = env_->NowMicros();
    if (delete_obsolete_files_last_run_ +
        options_.delete_obsolete_files_period_micros < now_micros) {
      doing_the_full_scan = true;
      delete_obsolete_files_last_run_ = now_micros;
    }
  }

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  // get obsolete files
  versions_->GetObsoleteFiles(&deletion_state.sst_delete_files);

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  // store the current filenum, lognum, etc
  deletion_state.manifest_file_number = versions_->ManifestFileNumber();
  deletion_state.log_number = versions_->LogNumber();
  deletion_state.prev_log_number = versions_->PrevLogNumber();

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  if (!doing_the_full_scan && !deletion_state.HaveSomethingToDelete()) {
    // avoid filling up sst_live if we're sure that we
    // are not going to do the full scan and that we don't have
    // anything to delete at the moment
    return;
  }

  // don't delete live files
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  deletion_state.sst_live.assign(pending_outputs_.begin(),
                                 pending_outputs_.end());
  versions_->AddLiveFiles(&deletion_state.sst_live);

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  if (doing_the_full_scan) {
    // set of all files in the directory
    env_->GetChildren(dbname_, &deletion_state.all_files); // Ignore errors

    //Add log files in wal_dir
    if (options_.wal_dir != dbname_) {
      std::vector<std::string> log_files;
      env_->GetChildren(options_.wal_dir, &log_files); // Ignore errors
      deletion_state.all_files.insert(
        deletion_state.all_files.end(),
        log_files.begin(),
        log_files.end()
      );
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    }
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  }
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}

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// Diffs the files listed in filenames and those that do not
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// belong to live files are posibly removed. Also, removes all the
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// files in sst_delete_files and log_delete_files.
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// It is not necessary to hold the mutex when invoking this method.
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void DBImpl::PurgeObsoleteFiles(DeletionState& state) {
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  // this checks if FindObsoleteFiles() was run before. If not, don't do
  // PurgeObsoleteFiles(). If FindObsoleteFiles() was run, we need to also
  // run PurgeObsoleteFiles(), even if disable_delete_obsolete_files_ is true
  if (state.manifest_file_number == 0) {
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    return;
  }

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  uint64_t number;
  FileType type;
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  std::vector<std::string> old_log_files;
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  // Now, convert live list to an unordered set, WITHOUT mutex held;
  // set is slow.
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  std::unordered_set<uint64_t> live_set(state.sst_live.begin(),
                                        state.sst_live.end());
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  state.all_files.reserve(state.all_files.size() +
      state.sst_delete_files.size());
  for (auto file : state.sst_delete_files) {
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    state.all_files.push_back(TableFileName("", file->number).substr(1));
529
    delete file;
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  }

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  state.all_files.reserve(state.all_files.size() +
      state.log_delete_files.size());
  for (auto filenum : state.log_delete_files) {
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    if (filenum > 0) {
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      state.all_files.push_back(LogFileName("", filenum).substr(1));
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    }
  }
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  // dedup state.all_files so we don't try to delete the same
  // file twice
  sort(state.all_files.begin(), state.all_files.end());
  auto unique_end = unique(state.all_files.begin(), state.all_files.end());

  for (size_t i = 0; state.all_files.begin() + i < unique_end; i++) {
546
    if (ParseFileName(state.all_files[i], &number, &type)) {
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      bool keep = true;
      switch (type) {
        case kLogFile:
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          keep = ((number >= state.log_number) ||
                  (number == state.prev_log_number));
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          break;
        case kDescriptorFile:
          // Keep my manifest file, and any newer incarnations'
          // (in case there is a race that allows other incarnations)
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          keep = (number >= state.manifest_file_number);
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          break;
        case kTableFile:
559
          keep = (live_set.find(number) != live_set.end());
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          break;
        case kTempFile:
          // Any temp files that are currently being written to must
          // be recorded in pending_outputs_, which is inserted into "live"
564
          keep = (live_set.find(number) != live_set.end());
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          break;
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        case kInfoLogFile:
          keep = true;
          if (number != 0) {
569
            old_log_files.push_back(state.all_files[i]);
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          }
          break;
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        case kCurrentFile:
        case kDBLockFile:
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        case kIdentityFile:
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        case kMetaDatabase:
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          keep = true;
          break;
      }

      if (!keep) {
        if (type == kTableFile) {
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          // evict from cache
          table_cache_->Evict(number);
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        }
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        std::string fname = ((type == kLogFile) ? options_.wal_dir : dbname_) +
            "/" + state.all_files[i];
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        Log(options_.info_log,
            "Delete type=%d #%lu",
            int(type),
            (unsigned long)number);
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        Status st;
        if (type == kLogFile && (options_.WAL_ttl_seconds > 0 ||
              options_.WAL_size_limit_MB > 0)) {
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            st = env_->RenameFile(fname,
                ArchivedLogFileName(options_.wal_dir, number));
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            if (!st.ok()) {
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              Log(options_.info_log,
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                  "RenameFile logfile #%lu FAILED -- %s\n",
                  (unsigned long)number, st.ToString().c_str());
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            }
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        } else {
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          st = env_->DeleteFile(fname);
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          if (!st.ok()) {
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            Log(options_.info_log, "Delete type=%d #%lu FAILED -- %s\n",
                int(type), (unsigned long)number, st.ToString().c_str());
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          }
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        }
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      }
    }
  }
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  // Delete old info log files.
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  size_t old_log_file_count = old_log_files.size();
  // NOTE: Currently we only support log purge when options_.db_log_dir is
  // located in `dbname` directory.
  if (old_log_file_count >= options_.keep_log_file_num &&
      options_.db_log_dir.empty()) {
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    std::sort(old_log_files.begin(), old_log_files.end());
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    size_t end = old_log_file_count - options_.keep_log_file_num;
621
    for (unsigned int i = 0; i <= end; i++) {
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      std::string& to_delete = old_log_files.at(i);
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      // Log(options_.info_log, "Delete type=%d %s\n",
      //     int(kInfoLogFile), to_delete.c_str());
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      env_->DeleteFile(dbname_ + "/" + to_delete);
    }
  }
628
  PurgeObsoleteWALFiles();
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  LogFlush(options_.info_log);
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}

void DBImpl::DeleteObsoleteFiles() {
  mutex_.AssertHeld();
  DeletionState deletion_state;
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  FindObsoleteFiles(deletion_state, true);
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  PurgeObsoleteFiles(deletion_state);
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}

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// 1. Go through all archived files and
//    a. if ttl is enabled, delete outdated files
//    b. if archive size limit is enabled, delete empty files,
//        compute file number and size.
// 2. If size limit is enabled:
//    a. compute how many files should be deleted
//    b. get sorted non-empty archived logs
//    c. delete what should be deleted
647
void DBImpl::PurgeObsoleteWALFiles() {
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  bool const ttl_enabled = options_.WAL_ttl_seconds > 0;
  bool const size_limit_enabled =  options_.WAL_size_limit_MB > 0;
  if (!ttl_enabled && !size_limit_enabled) {
    return;
  }

654 655
  int64_t current_time;
  Status s = env_->GetCurrentTime(&current_time);
656 657 658 659 660 661 662 663
  if (!s.ok()) {
    Log(options_.info_log, "Can't get current time: %s", s.ToString().c_str());
    assert(false);
    return;
  }
  uint64_t const now_seconds = static_cast<uint64_t>(current_time);
  uint64_t const time_to_check = (ttl_enabled && !size_limit_enabled) ?
    options_.WAL_ttl_seconds / 2 : default_interval_to_delete_obsolete_WAL_;
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  if (purge_wal_files_last_run_ + time_to_check > now_seconds) {
    return;
  }

  purge_wal_files_last_run_ = now_seconds;

  std::string archival_dir = ArchivalDirectory(options_.wal_dir);
  std::vector<std::string> files;
  s = env_->GetChildren(archival_dir, &files);
  if (!s.ok()) {
    Log(options_.info_log, "Can't get archive files: %s", s.ToString().c_str());
    assert(false);
    return;
  }

  size_t log_files_num = 0;
  uint64_t log_file_size = 0;

  for (auto& f : files) {
    uint64_t number;
    FileType type;
    if (ParseFileName(f, &number, &type) && type == kLogFile) {
      std::string const file_path = archival_dir + "/" + f;
      if (ttl_enabled) {
        uint64_t file_m_time;
        Status const s = env_->GetFileModificationTime(file_path,
          &file_m_time);
        if (!s.ok()) {
          Log(options_.info_log, "Can't get file mod time: %s: %s",
              file_path.c_str(), s.ToString().c_str());
          continue;
        }
        if (now_seconds - file_m_time > options_.WAL_ttl_seconds) {
          Status const s = env_->DeleteFile(file_path);
          if (!s.ok()) {
            Log(options_.info_log, "Can't delete file: %s: %s",
                file_path.c_str(), s.ToString().c_str());
            continue;
          }
          continue;
705
        }
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      }

      if (size_limit_enabled) {
        uint64_t file_size;
        Status const s = env_->GetFileSize(file_path, &file_size);
        if (!s.ok()) {
          Log(options_.info_log, "Can't get file size: %s: %s",
              file_path.c_str(), s.ToString().c_str());
          return;
        } else {
          if (file_size > 0) {
            log_file_size = std::max(log_file_size, file_size);
            ++log_files_num;
          } else {
            Status s = env_->DeleteFile(file_path);
            if (!s.ok()) {
              Log(options_.info_log, "Can't delete file: %s: %s",
                  file_path.c_str(), s.ToString().c_str());
              continue;
            }
          }
        }
      }
    }
  }

  if (0 == log_files_num || !size_limit_enabled) {
    return;
  }

  size_t const files_keep_num = options_.WAL_size_limit_MB *
    1024 * 1024 / log_file_size;
  if (log_files_num <= files_keep_num) {
    return;
  }

  size_t files_del_num = log_files_num - files_keep_num;
  VectorLogPtr archived_logs;
  AppendSortedWalsOfType(archival_dir, archived_logs, kArchivedLogFile);

  if (files_del_num > archived_logs.size()) {
    Log(options_.info_log, "Trying to delete more archived log files than "
        "exist. Deleting all");
    files_del_num = archived_logs.size();
  }

  for (size_t i = 0; i < files_del_num; ++i) {
    std::string const file_path = archived_logs[i]->PathName();
    Status const s = DeleteFile(file_path);
    if (!s.ok()) {
      Log(options_.info_log, "Can't delete file: %s: %s",
          file_path.c_str(), s.ToString().c_str());
      continue;
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    }
  }
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}

763 764 765
// If externalTable is set, then apply recovered transactions
// to that table. This is used for readonly mode.
Status DBImpl::Recover(VersionEdit* edit, MemTable* external_table,
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    bool error_if_log_file_exist) {
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  mutex_.AssertHeld();

769
  assert(db_lock_ == nullptr);
770
  if (!external_table) {
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    // We call CreateDirIfMissing() as the directory may already exist (if we
    // are reopening a DB), when this happens we don't want creating the
    // directory to cause an error. However, we need to check if creating the
    // directory fails or else we may get an obscure message about the lock
    // file not existing. One real-world example of this occurring is if
    // env->CreateDirIfMissing() doesn't create intermediate directories, e.g.
    // when dbname_ is "dir/db" but when "dir" doesn't exist.
    Status s = env_->CreateDirIfMissing(dbname_);
    if (!s.ok()) {
      return s;
    }

    s = env_->LockFile(LockFileName(dbname_), &db_lock_);
784 785 786
    if (!s.ok()) {
      return s;
    }
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    if (!env_->FileExists(CurrentFileName(dbname_))) {
      if (options_.create_if_missing) {
790
        // TODO: add merge_operator name check
791 792 793 794 795 796 797
        s = NewDB();
        if (!s.ok()) {
          return s;
        }
      } else {
        return Status::InvalidArgument(
            dbname_, "does not exist (create_if_missing is false)");
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      }
    } else {
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      if (options_.error_if_exists) {
        return Status::InvalidArgument(
            dbname_, "exists (error_if_exists is true)");
      }
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    }
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    // Check for the IDENTITY file and create it if not there
    if (!env_->FileExists(IdentityFileName(dbname_))) {
      s = SetIdentityFile(env_, dbname_);
      if (!s.ok()) {
        return s;
      }
    }
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  }

814
  Status s = versions_->Recover();
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  if (s.ok()) {
    SequenceNumber max_sequence(0);
817 818 819 820 821 822 823

    // Recover from all newer log files than the ones named in the
    // descriptor (new log files may have been added by the previous
    // incarnation without registering them in the descriptor).
    //
    // Note that PrevLogNumber() is no longer used, but we pay
    // attention to it in case we are recovering a database
824
    // produced by an older version of rocksdb.
825 826 827
    const uint64_t min_log = versions_->LogNumber();
    const uint64_t prev_log = versions_->PrevLogNumber();
    std::vector<std::string> filenames;
828
    s = env_->GetChildren(options_.wal_dir, &filenames);
829 830
    if (!s.ok()) {
      return s;
831
    }
832 833 834 835 836 837 838 839 840
    uint64_t number;
    FileType type;
    std::vector<uint64_t> logs;
    for (size_t i = 0; i < filenames.size(); i++) {
      if (ParseFileName(filenames[i], &number, &type)
          && type == kLogFile
          && ((number >= min_log) || (number == prev_log))) {
        logs.push_back(number);
      }
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    }
842

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    if (logs.size() > 0 && error_if_log_file_exist) {
      return Status::Corruption(""
          "The db was opened in readonly mode with error_if_log_file_exist"
          "flag but a log file already exists");
    }

849 850 851
    // Recover in the order in which the logs were generated
    std::sort(logs.begin(), logs.end());
    for (size_t i = 0; i < logs.size(); i++) {
852
      s = RecoverLogFile(logs[i], edit, &max_sequence, external_table);
853 854 855 856
      // The previous incarnation may not have written any MANIFEST
      // records after allocating this log number.  So we manually
      // update the file number allocation counter in VersionSet.
      versions_->MarkFileNumberUsed(logs[i]);
857 858
    }

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    if (s.ok()) {
860 861 862
      if (versions_->LastSequence() < max_sequence) {
        versions_->SetLastSequence(max_sequence);
      }
863 864
      SetTickerCount(options_.statistics, SEQUENCE_NUMBER,
                     versions_->LastSequence());
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    }
  }

  return s;
}

Status DBImpl::RecoverLogFile(uint64_t log_number,
                              VersionEdit* edit,
873 874
                              SequenceNumber* max_sequence,
                              MemTable* external_table) {
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  struct LogReporter : public log::Reader::Reporter {
    Env* env;
877
    Logger* info_log;
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    const char* fname;
879 880
    Status* status;  // nullptr if options_.paranoid_checks==false or
                     //            options_.skip_log_error_on_recovery==true
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    virtual void Corruption(size_t bytes, const Status& s) {
882
      Log(info_log, "%s%s: dropping %d bytes; %s",
883
          (this->status == nullptr ? "(ignoring error) " : ""),
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          fname, static_cast<int>(bytes), s.ToString().c_str());
885
      if (this->status != nullptr && this->status->ok()) *this->status = s;
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    }
  };

  mutex_.AssertHeld();

  // Open the log file
892
  std::string fname = LogFileName(options_.wal_dir, log_number);
893
  unique_ptr<SequentialFile> file;
894
  Status status = env_->NewSequentialFile(fname, &file, storage_options_);
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  if (!status.ok()) {
    MaybeIgnoreError(&status);
    return status;
  }

  // Create the log reader.
  LogReporter reporter;
  reporter.env = env_;
903
  reporter.info_log = options_.info_log.get();
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  reporter.fname = fname.c_str();
905 906
  reporter.status = (options_.paranoid_checks &&
                     !options_.skip_log_error_on_recovery ? &status : nullptr);
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  // We intentially make log::Reader do checksumming even if
  // paranoid_checks==false so that corruptions cause entire commits
  // to be skipped instead of propagating bad information (like overly
  // large sequence numbers).
911
  log::Reader reader(std::move(file), &reporter, true/*checksum*/,
912
                     0/*initial_offset*/);
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  Log(options_.info_log, "Recovering log #%lu",
      (unsigned long) log_number);
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  // Read all the records and add to a memtable
  std::string scratch;
  Slice record;
  WriteBatch batch;
920
  MemTable* mem = nullptr;
921 922 923
  if (external_table) {
    mem = external_table;
  }
924
  while (reader.ReadRecord(&record, &scratch) && status.ok()) {
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    if (record.size() < 12) {
      reporter.Corruption(
          record.size(), Status::Corruption("log record too small"));
      continue;
    }
    WriteBatchInternal::SetContents(&batch, record);

932
    if (mem == nullptr) {
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      mem = new MemTable(internal_comparator_, mem_rep_factory_,
        NumberLevels(), options_);
935
      mem->Ref();
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    }
937
    status = WriteBatchInternal::InsertInto(&batch, mem, &options_);
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    MaybeIgnoreError(&status);
    if (!status.ok()) {
      break;
    }
    const SequenceNumber last_seq =
        WriteBatchInternal::Sequence(&batch) +
        WriteBatchInternal::Count(&batch) - 1;
    if (last_seq > *max_sequence) {
      *max_sequence = last_seq;
    }

949 950
    if (!external_table &&
        mem->ApproximateMemoryUsage() > options_.write_buffer_size) {
951
      status = WriteLevel0TableForRecovery(mem, edit);
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      if (!status.ok()) {
        // Reflect errors immediately so that conditions like full
        // file-systems cause the DB::Open() to fail.
        break;
      }
957
      mem->Unref();
958
      mem = nullptr;
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    }
  }

962
  if (status.ok() && mem != nullptr && !external_table) {
963
    status = WriteLevel0TableForRecovery(mem, edit);
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    // Reflect errors immediately so that conditions like full
    // file-systems cause the DB::Open() to fail.
  }

968
  if (mem != nullptr && !external_table) mem->Unref();
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  return status;
}

972
Status DBImpl::WriteLevel0TableForRecovery(MemTable* mem, VersionEdit* edit) {
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  mutex_.AssertHeld();
974
  const uint64_t start_micros = env_->NowMicros();
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  FileMetaData meta;
  meta.number = versions_->NewFileNumber();
  pending_outputs_.insert(meta.number);
  Iterator* iter = mem->NewIterator();
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  const SequenceNumber newest_snapshot = snapshots_.GetNewest();
  const SequenceNumber earliest_seqno_in_memtable =
    mem->GetFirstSequenceNumber();
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  Log(options_.info_log, "Level-0 table #%lu: started",
      (unsigned long) meta.number);
984 985 986 987

  Status s;
  {
    mutex_.Unlock();
988 989
    s = BuildTable(dbname_, env_, options_, storage_options_,
                   table_cache_.get(), iter, &meta,
990
                   user_comparator(), newest_snapshot,
991
                   earliest_seqno_in_memtable, true);
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    LogFlush(options_.info_log);
993 994 995
    mutex_.Lock();
  }

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  Log(options_.info_log, "Level-0 table #%lu: %lu bytes %s",
      (unsigned long) meta.number,
      (unsigned long) meta.file_size,
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      s.ToString().c_str());
  delete iter;
1001

1002
  pending_outputs_.erase(meta.number);
1003 1004 1005 1006 1007 1008

  // Note that if file_size is zero, the file has been deleted and
  // should not be added to the manifest.
  int level = 0;
  if (s.ok() && meta.file_size > 0) {
    edit->AddFile(level, meta.number, meta.file_size,
1009 1010
                  meta.smallest, meta.largest,
                  meta.smallest_seqno, meta.largest_seqno);
1011 1012
  }

1013 1014 1015
  CompactionStats stats;
  stats.micros = env_->NowMicros() - start_micros;
  stats.bytes_written = meta.file_size;
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  stats.files_out_levelnp1 = 1;
1017
  stats_[level].Add(stats);
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  return s;
}

1021

1022
Status DBImpl::WriteLevel0Table(std::vector<MemTable*> &mems, VersionEdit* edit,
1023
                                uint64_t* filenumber) {
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  mutex_.AssertHeld();
1025 1026 1027 1028 1029
  const uint64_t start_micros = env_->NowMicros();
  FileMetaData meta;
  meta.number = versions_->NewFileNumber();
  *filenumber = meta.number;
  pending_outputs_.insert(meta.number);
1030 1031 1032

  std::vector<Iterator*> list;
  for (MemTable* m : mems) {
1033
    Log(options_.info_log,
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1034 1035
        "Flushing memtable with log file: %lu\n",
        (unsigned long)m->GetLogNumber());
1036 1037
    list.push_back(m->NewIterator());
  }
1038
  Iterator* iter = NewMergingIterator(env_, &internal_comparator_, &list[0],
1039
                                      list.size());
1040 1041
  const SequenceNumber newest_snapshot = snapshots_.GetNewest();
  const SequenceNumber earliest_seqno_in_memtable =
1042
    mems[0]->GetFirstSequenceNumber();
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  Log(options_.info_log,
      "Level-0 flush table #%lu: started",
      (unsigned long)meta.number);
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1047
  Version* base = versions_->current();
1048
  base->Ref();          // it is likely that we do not need this reference
1049 1050 1051
  Status s;
  {
    mutex_.Unlock();
1052 1053 1054 1055 1056
    // We skip compression if universal compression is used and the size
    // threshold is set for compression.
    bool enable_compression = (options_.compaction_style
        != kCompactionStyleUniversal ||
        options_.compaction_options_universal.compression_size_percent < 0);
1057 1058
    s = BuildTable(dbname_, env_, options_, storage_options_,
                   table_cache_.get(), iter, &meta,
1059
                   user_comparator(), newest_snapshot,
1060
                   earliest_seqno_in_memtable, enable_compression);
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    LogFlush(options_.info_log);
1062 1063
    mutex_.Lock();
  }
1064 1065
  base->Unref();

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  Log(options_.info_log, "Level-0 flush table #%lu: %lu bytes %s",
      (unsigned long) meta.number,
      (unsigned long) meta.file_size,
1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079
      s.ToString().c_str());
  delete iter;

  // re-acquire the most current version
  base = versions_->current();

  // There could be multiple threads writing to its own level-0 file.
  // The pending_outputs cannot be cleared here, otherwise this newly
  // created file might not be considered as a live-file by another
  // compaction thread that is concurrently deleting obselete files.
  // The pending_outputs can be cleared only after the new version is
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  // committed so that other threads can recognize this file as a
1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093
  // valid one.
  // pending_outputs_.erase(meta.number);

  // Note that if file_size is zero, the file has been deleted and
  // should not be added to the manifest.
  int level = 0;
  if (s.ok() && meta.file_size > 0) {
    const Slice min_user_key = meta.smallest.user_key();
    const Slice max_user_key = meta.largest.user_key();
    // if we have more than 1 background thread, then we cannot
    // insert files directly into higher levels because some other
    // threads could be concurrently producing compacted files for
    // that key range.
1094
    if (base != nullptr && options_.max_background_compactions <= 1 &&
1095
        options_.compaction_style == kCompactionStyleLevel) {
1096 1097 1098
      level = base->PickLevelForMemTableOutput(min_user_key, max_user_key);
    }
    edit->AddFile(level, meta.number, meta.file_size,
1099 1100
                  meta.smallest, meta.largest,
                  meta.smallest_seqno, meta.largest_seqno);
1101 1102 1103 1104 1105 1106 1107 1108 1109
  }

  CompactionStats stats;
  stats.micros = env_->NowMicros() - start_micros;
  stats.bytes_written = meta.file_size;
  stats_[level].Add(stats);
  return s;
}

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Status DBImpl::FlushMemTableToOutputFile(bool* madeProgress,
                                         DeletionState& deletion_state) {
1112 1113 1114
  mutex_.AssertHeld();
  assert(imm_.size() != 0);

1115
  if (!imm_.IsFlushPending(options_.min_write_buffer_number_to_merge)) {
1116 1117
    Log(options_.info_log, "FlushMemTableToOutputFile already in progress");
    Status s = Status::IOError("FlushMemTableToOutputFile already in progress");
1118 1119 1120 1121 1122
    return s;
  }

  // Save the contents of the earliest memtable as a new Table
  uint64_t file_number;
1123 1124 1125
  std::vector<MemTable*> mems;
  imm_.PickMemtablesToFlush(&mems);
  if (mems.empty()) {
1126 1127 1128 1129 1130 1131
    Log(options_.info_log, "Nothing in memstore to flush");
    Status s = Status::IOError("Nothing in memstore to flush");
    return s;
  }

  // record the logfile_number_ before we release the mutex
1132 1133 1134
  // entries mems are (implicitly) sorted in ascending order by their created
  // time. We will use the first memtable's `edit` to keep the meta info for
  // this flush.
1135
  MemTable* m = mems[0];
1136 1137
  VersionEdit* edit = m->GetEdits();
  edit->SetPrevLogNumber(0);
1138 1139 1140 1141 1142 1143 1144 1145 1146 1147
  // SetLogNumber(log_num) indicates logs with number smaller than log_num
  // will no longer be picked up for recovery.
  edit->SetLogNumber(
      mems.back()->GetNextLogNumber()
  );

  std::vector<uint64_t> logs_to_delete;
  for (auto mem : mems) {
    logs_to_delete.push_back(mem->GetLogNumber());
  }
1148

1149
  // This will release and re-acquire the mutex.
1150
  Status s = WriteLevel0Table(mems, edit, &file_number);
1151

1152
  if (s.ok() && shutting_down_.Acquire_Load()) {
1153 1154 1155
    s = Status::IOError(
      "Database shutdown started during memtable compaction"
    );
1156
  }
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1158
  // Replace immutable memtable with the generated Table
1159
  s = imm_.InstallMemtableFlushResults(
1160
    mems, versions_.get(), s, &mutex_, options_.info_log.get(),
1161
    file_number, pending_outputs_);
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  if (s.ok()) {
1164 1165 1166
    if (madeProgress) {
      *madeProgress = 1;
    }
1167

1168
    MaybeScheduleLogDBDeployStats();
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1170
    if (!disable_delete_obsolete_files_) {
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      // add to deletion state
1172 1173 1174 1175
      deletion_state.log_delete_files.insert(
          deletion_state.log_delete_files.end(),
          logs_to_delete.begin(),
          logs_to_delete.end());
1176
    }
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  }
  return s;
}

1181
void DBImpl::CompactRange(const Slice* begin, const Slice* end,
1182
                          bool reduce_level, int target_level) {
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  int max_level_with_files = 1;
  {
    MutexLock l(&mutex_);
    Version* base = versions_->current();
1187
    for (int level = 1; level < NumberLevels(); level++) {
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      if (base->OverlapInLevel(level, begin, end)) {
        max_level_with_files = level;
      }
    }
  }
1193
  TEST_FlushMemTable(); // TODO(sanjay): Skip if memtable does not overlap
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  for (int level = 0; level < max_level_with_files; level++) {
    TEST_CompactRange(level, begin, end);
  }
1197 1198

  if (reduce_level) {
1199
    ReFitLevel(max_level_with_files, target_level);
1200
  }
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  LogFlush(options_.info_log);
1202 1203 1204 1205 1206 1207
}

// return the same level if it cannot be moved
int DBImpl::FindMinimumEmptyLevelFitting(int level) {
  mutex_.AssertHeld();
  int minimum_level = level;
1208
  for (int i = level - 1; i > 0; --i) {
1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219
    // stop if level i is not empty
    if (versions_->NumLevelFiles(i) > 0) break;

    // stop if level i is too small (cannot fit the level files)
    if (versions_->MaxBytesForLevel(i) < versions_->NumLevelBytes(level)) break;

    minimum_level = i;
  }
  return minimum_level;
}

1220
void DBImpl::ReFitLevel(int level, int target_level) {
1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233
  assert(level < NumberLevels());

  MutexLock l(&mutex_);

  // only allow one thread refitting
  if (refitting_level_) {
    Log(options_.info_log, "ReFitLevel: another thread is refitting");
    return;
  }
  refitting_level_ = true;

  // wait for all background threads to stop
  bg_work_gate_closed_ = true;
1234
  while (bg_compaction_scheduled_ > 0 || bg_flush_scheduled_) {
1235
    Log(options_.info_log,
1236 1237
        "RefitLevel: waiting for background threads to stop: %d %d",
        bg_compaction_scheduled_, bg_flush_scheduled_);
1238 1239 1240 1241
    bg_cv_.Wait();
  }

  // move to a smaller level
1242 1243 1244 1245
  int to_level = target_level;
  if (target_level < 0) {
    to_level = FindMinimumEmptyLevelFitting(level);
  }
1246 1247 1248 1249 1250 1251 1252 1253 1254 1255

  assert(to_level <= level);

  if (to_level < level) {
    Log(options_.info_log, "Before refitting:\n%s",
        versions_->current()->DebugString().data());

    VersionEdit edit(NumberLevels());
    for (const auto& f : versions_->current()->files_[level]) {
      edit.DeleteFile(level, f->number);
1256 1257
      edit.AddFile(to_level, f->number, f->file_size, f->smallest, f->largest,
                   f->smallest_seqno, f->largest_seqno);
1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273
    }
    Log(options_.info_log, "Apply version edit:\n%s",
        edit.DebugString().data());

    auto status = versions_->LogAndApply(&edit, &mutex_);

    Log(options_.info_log, "LogAndApply: %s\n", status.ToString().data());

    if (status.ok()) {
      Log(options_.info_log, "After refitting:\n%s",
          versions_->current()->DebugString().data());
    }
  }

  refitting_level_ = false;
  bg_work_gate_closed_ = false;
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}

1276
int DBImpl::NumberLevels() {
1277
  return options_.num_levels;
1278 1279 1280
}

int DBImpl::MaxMemCompactionLevel() {
1281
  return options_.max_mem_compaction_level;
1282 1283 1284
}

int DBImpl::Level0StopWriteTrigger() {
1285
  return options_.level0_stop_writes_trigger;
1286 1287
}

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Status DBImpl::Flush(const FlushOptions& options) {
  Status status = FlushMemTable(options);
  return status;
}

1293
SequenceNumber DBImpl::GetLatestSequenceNumber() const {
1294 1295 1296
  return versions_->LastSequence();
}

1297
Status DBImpl::GetUpdatesSince(SequenceNumber seq,
1298
                               unique_ptr<TransactionLogIterator>* iter) {
1299

1300
  RecordTick(options_.statistics, GET_UPDATES_SINCE_CALLS);
1301
  if (seq > versions_->LastSequence()) {
1302 1303 1304
    return Status::IOError("Requested sequence not yet written in the db");
  }
  //  Get all sorted Wal Files.
1305 1306
  //  Do binary search and open files and find the seq number.

1307 1308
  std::unique_ptr<VectorLogPtr> wal_files(new VectorLogPtr);
  Status s = GetSortedWalFiles(*wal_files);
1309 1310 1311 1312
  if (!s.ok()) {
    return s;
  }

1313
  s = RetainProbableWalFiles(*wal_files, seq);
1314 1315
  if (!s.ok()) {
    return s;
1316
  }
1317
  iter->reset(
1318
    new TransactionLogIteratorImpl(options_.wal_dir,
1319
                                   &options_,
1320
                                   storage_options_,
1321
                                   seq,
1322
                                   std::move(wal_files),
1323
                                   this));
1324
  return (*iter)->status();
1325 1326
}

1327 1328
Status DBImpl::RetainProbableWalFiles(VectorLogPtr& all_logs,
                                      const SequenceNumber target) {
1329
  long start = 0; // signed to avoid overflow when target is < first file.
1330
  long end = static_cast<long>(all_logs.size()) - 1;
1331
  // Binary Search. avoid opening all files.
1332 1333
  while (end >= start) {
    long mid = start + (end - start) / 2;  // Avoid overflow.
1334 1335
    SequenceNumber current_seq_num = all_logs.at(mid)->StartSequence();
    if (current_seq_num == target) {
1336
      end = mid;
1337
      break;
1338
    } else if (current_seq_num < target) {
1339
      start = mid + 1;
1340
    } else {
1341
      end = mid - 1;
1342 1343
    }
  }
1344 1345 1346
  size_t start_index = std::max(0l, end); // end could be -ve.
  // The last wal file is always included
  all_logs.erase(all_logs.begin(), all_logs.begin() + start_index);
1347 1348 1349
  return Status::OK();
}

1350 1351 1352
bool DBImpl::CheckWalFileExistsAndEmpty(const WalFileType type,
                                        const uint64_t number) {
  const std::string fname = (type == kAliveLogFile) ?
1353 1354
    LogFileName(options_.wal_dir, number) :
    ArchivedLogFileName(options_.wal_dir, number);
1355 1356
  uint64_t file_size;
  Status s = env_->GetFileSize(fname, &file_size);
1357
  return (s.ok() && (file_size == 0));
1358 1359
}

1360 1361
Status DBImpl::ReadFirstRecord(const WalFileType type, const uint64_t number,
                               WriteBatch* const result) {
1362

1363
  if (type == kAliveLogFile) {
1364
    std::string fname = LogFileName(options_.wal_dir, number);
1365 1366 1367
    Status status = ReadFirstLine(fname, result);
    if (!status.ok()) {
      //  check if the file got moved to archive.
1368 1369
      std::string archived_file =
        ArchivedLogFileName(options_.wal_dir, number);
1370
      Status s = ReadFirstLine(archived_file, result);
1371
      if (!s.ok()) {
1372
        return Status::IOError("Log File has been deleted: " + archived_file);
1373 1374 1375
      }
    }
    return Status::OK();
1376
  } else if (type == kArchivedLogFile) {
1377
    std::string fname = ArchivedLogFileName(options_.wal_dir, number);
1378 1379 1380
    Status status = ReadFirstLine(fname, result);
    return status;
  }
1381
  return Status::NotSupported("File Type Not Known: " + std::to_string(type));
1382 1383 1384 1385 1386 1387 1388 1389
}

Status DBImpl::ReadFirstLine(const std::string& fname,
                             WriteBatch* const batch) {
  struct LogReporter : public log::Reader::Reporter {
    Env* env;
    Logger* info_log;
    const char* fname;
1390
    Status* status;  // nullptr if options_.paranoid_checks==false
1391 1392
    virtual void Corruption(size_t bytes, const Status& s) {
      Log(info_log, "%s%s: dropping %d bytes; %s",
1393
          (this->status == nullptr ? "(ignoring error) " : ""),
1394
          fname, static_cast<int>(bytes), s.ToString().c_str());
1395
      if (this->status != nullptr && this->status->ok()) *this->status = s;
1396 1397 1398
    }
  };

1399
  unique_ptr<SequentialFile> file;
1400
  Status status = env_->NewSequentialFile(fname, &file, storage_options_);
1401 1402 1403 1404 1405 1406 1407 1408

  if (!status.ok()) {
    return status;
  }


  LogReporter reporter;
  reporter.env = env_;
1409
  reporter.info_log = options_.info_log.get();
1410
  reporter.fname = fname.c_str();
1411
  reporter.status = (options_.paranoid_checks ? &status : nullptr);
1412
  log::Reader reader(std::move(file), &reporter, true/*checksum*/,
1413 1414 1415
                     0/*initial_offset*/);
  std::string scratch;
  Slice record;
1416

1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429
  if (reader.ReadRecord(&record, &scratch) && status.ok()) {
    if (record.size() < 12) {
      reporter.Corruption(
          record.size(), Status::Corruption("log record too small"));
      return Status::IOError("Corruption noted");
      //  TODO read record's till the first no corrupt entry?
    }
    WriteBatchInternal::SetContents(batch, record);
    return Status::OK();
  }
  return Status::IOError("Error reading from file " + fname);
}

1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442
struct CompareLogByPointer {
  bool operator() (const unique_ptr<LogFile>& a,
                   const unique_ptr<LogFile>& b) {
    LogFileImpl* a_impl = dynamic_cast<LogFileImpl*>(a.get());
    LogFileImpl* b_impl = dynamic_cast<LogFileImpl*>(b.get());
    return *a_impl < *b_impl;
  }
};

Status DBImpl::AppendSortedWalsOfType(const std::string& path,
    VectorLogPtr& log_files, WalFileType log_type) {
  std::vector<std::string> all_files;
  const Status status = env_->GetChildren(path, &all_files);
1443 1444 1445
  if (!status.ok()) {
    return status;
  }
1446
  log_files.reserve(log_files.size() + all_files.size());
1447 1448 1449 1450 1451 1452
  VectorLogPtr::iterator pos_start;
  if (!log_files.empty()) {
    pos_start = log_files.end() - 1;
  } else {
    pos_start = log_files.begin();
  }
1453
  for (const auto& f : all_files) {
1454 1455
    uint64_t number;
    FileType type;
1456
    if (ParseFileName(f, &number, &type) && type == kLogFile){
1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473 1474

      WriteBatch batch;
      Status s = ReadFirstRecord(log_type, number, &batch);
      if (!s.ok()) {
        if (CheckWalFileExistsAndEmpty(log_type, number)) {
          continue;
        }
        return s;
      }

      uint64_t size_bytes;
      s = env_->GetFileSize(LogFileName(path, number), &size_bytes);
      if (!s.ok()) {
        return s;
      }

      log_files.push_back(std::move(unique_ptr<LogFile>(new LogFileImpl(
        number, log_type, WriteBatchInternal::Sequence(&batch), size_bytes))));
1475 1476
    }
  }
1477
  CompareLogByPointer compare_log_files;
1478
  std::sort(pos_start, log_files.end(), compare_log_files);
1479 1480 1481
  return status;
}

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1482
void DBImpl::TEST_CompactRange(int level, const Slice* begin,const Slice* end) {
1483 1484
  assert(level >= 0);

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1485 1486
  InternalKey begin_storage, end_storage;

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  ManualCompaction manual;
  manual.level = level;
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1489
  manual.done = false;
1490
  manual.in_progress = false;
1491 1492 1493 1494
  // For universal compaction, we enforce every manual compaction to compact
  // all files.
  if (begin == nullptr ||
      options_.compaction_style == kCompactionStyleUniversal) {
1495
    manual.begin = nullptr;
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1496 1497 1498 1499
  } else {
    begin_storage = InternalKey(*begin, kMaxSequenceNumber, kValueTypeForSeek);
    manual.begin = &begin_storage;
  }
1500 1501
  if (end == nullptr ||
      options_.compaction_style == kCompactionStyleUniversal) {
1502
    manual.end = nullptr;
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1503 1504 1505 1506 1507 1508
  } else {
    end_storage = InternalKey(*end, 0, static_cast<ValueType>(0));
    manual.end = &end_storage;
  }

  MutexLock l(&mutex_);
1509

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  // When a manual compaction arrives, temporarily throttle down
  // the number of background compaction threads to 1. This is
  // needed to ensure that this manual compaction can compact
  // any range of keys/files. We artificialy increase
1514 1515 1516 1517 1518 1519 1520 1521 1522 1523 1524 1525 1526
  // bg_compaction_scheduled_ by a large number, this causes
  // the system to have a single background thread. Now,
  // this manual compaction can progress without stomping
  // on any other concurrent compactions.
  const int LargeNumber = 10000000;
  const int newvalue = options_.max_background_compactions-1;
  bg_compaction_scheduled_ += LargeNumber;
  while (bg_compaction_scheduled_ > LargeNumber) {
    Log(options_.info_log, "Manual compaction request waiting for background threads to fall below 1");
    bg_cv_.Wait();
  }
  Log(options_.info_log, "Manual compaction starting");

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1527
  while (!manual.done) {
1528
    while (manual_compaction_ != nullptr) {
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1529 1530 1531
      bg_cv_.Wait();
    }
    manual_compaction_ = &manual;
1532 1533 1534
    if (bg_compaction_scheduled_ == LargeNumber) {
      bg_compaction_scheduled_ = newvalue;
    }
1535
    MaybeScheduleFlushOrCompaction();
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1536 1537 1538
    while (manual_compaction_ == &manual) {
      bg_cv_.Wait();
    }
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hans@chromium.org 已提交
1539
  }
1540 1541 1542 1543 1544 1545 1546 1547 1548
  assert(!manual.in_progress);

  // wait till there are no background threads scheduled
  bg_compaction_scheduled_ += LargeNumber;
  while (bg_compaction_scheduled_ > LargeNumber + newvalue) {
    Log(options_.info_log, "Manual compaction resetting background threads");
    bg_cv_.Wait();
  }
  bg_compaction_scheduled_ = 0;
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1549 1550
}

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1551
Status DBImpl::FlushMemTable(const FlushOptions& options) {
1552 1553
  // nullptr batch means just wait for earlier writes to be done
  Status s = Write(WriteOptions(), nullptr);
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heyongqiang 已提交
1554
  if (s.ok() && options.wait) {
1555
    // Wait until the compaction completes
1556
    s = WaitForFlushMemTable();
1557 1558
  }
  return s;
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1559 1560
}

1561
Status DBImpl::WaitForFlushMemTable() {
1562 1563 1564
  Status s;
  // Wait until the compaction completes
  MutexLock l(&mutex_);
1565
  while (imm_.size() > 0 && bg_error_.ok()) {
1566 1567
    bg_cv_.Wait();
  }
1568
  if (imm_.size() != 0) {
1569 1570 1571
    s = bg_error_;
  }
  return s;
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1572 1573
}

1574
Status DBImpl::TEST_FlushMemTable() {
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1575 1576 1577
  return FlushMemTable(FlushOptions());
}

1578 1579
Status DBImpl::TEST_WaitForFlushMemTable() {
  return WaitForFlushMemTable();
1580 1581 1582
}

Status DBImpl::TEST_WaitForCompact() {
1583
  // Wait until the compaction completes
1584 1585 1586 1587 1588

  // TODO: a bug here. This function actually does not necessarily
  // wait for compact. It actually waits for scheduled compaction
  // OR flush to finish.

1589
  MutexLock l(&mutex_);
1590 1591
  while ((bg_compaction_scheduled_ || bg_flush_scheduled_) &&
         bg_error_.ok()) {
1592 1593 1594
    bg_cv_.Wait();
  }
  return bg_error_;
1595 1596
}

1597
void DBImpl::MaybeScheduleFlushOrCompaction() {
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  mutex_.AssertHeld();
1599 1600
  if (bg_work_gate_closed_) {
    // gate closed for backgrond work
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  } else if (shutting_down_.Acquire_Load()) {
    // DB is being deleted; no more background compactions
  } else {
1604 1605 1606 1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628 1629 1630 1631
    bool is_flush_pending =
      imm_.IsFlushPending(options_.min_write_buffer_number_to_merge);
    if (is_flush_pending &&
        (bg_flush_scheduled_ < options_.max_background_flushes)) {
      // memtable flush needed
      bg_flush_scheduled_++;
      env_->Schedule(&DBImpl::BGWorkFlush, this, Env::Priority::HIGH);
    }

    if ((manual_compaction_ ||
         versions_->NeedsCompaction() ||
         (is_flush_pending && (options_.max_background_flushes <= 0))) &&
        bg_compaction_scheduled_ < options_.max_background_compactions) {
      // compaction needed, or memtable flush needed but HIGH pool not enabled.
      bg_compaction_scheduled_++;
      env_->Schedule(&DBImpl::BGWorkCompaction, this, Env::Priority::LOW);
    }
  }
}

void DBImpl::BGWorkFlush(void* db) {
  reinterpret_cast<DBImpl*>(db)->BackgroundCallFlush();
}

void DBImpl::BGWorkCompaction(void* db) {
  reinterpret_cast<DBImpl*>(db)->BackgroundCallCompaction();
}

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Status DBImpl::BackgroundFlush(bool* madeProgress,
                               DeletionState& deletion_state) {
1634 1635 1636 1637
  Status stat;
  while (stat.ok() &&
         imm_.IsFlushPending(options_.min_write_buffer_number_to_merge)) {
    Log(options_.info_log,
1638
        "BackgroundCallFlush doing FlushMemTableToOutputFile, flush slots available %d",
1639
        options_.max_background_flushes - bg_flush_scheduled_);
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    stat = FlushMemTableToOutputFile(madeProgress, deletion_state);
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  }
1642
  return stat;
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}

1645
void DBImpl::BackgroundCallFlush() {
1646
  bool madeProgress = false;
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  DeletionState deletion_state;
1648 1649 1650
  assert(bg_flush_scheduled_);
  MutexLock l(&mutex_);

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  Status s;
1652
  if (!shutting_down_.Acquire_Load()) {
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    s = BackgroundFlush(&madeProgress, deletion_state);
1654 1655 1656 1657 1658 1659 1660 1661 1662
    if (!s.ok()) {
      // Wait a little bit before retrying background compaction in
      // case this is an environmental problem and we do not want to
      // chew up resources for failed compactions for the duration of
      // the problem.
      bg_cv_.SignalAll();  // In case a waiter can proceed despite the error
      Log(options_.info_log, "Waiting after background flush error: %s",
          s.ToString().c_str());
      mutex_.Unlock();
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      LogFlush(options_.info_log);
1664 1665 1666 1667 1668
      env_->SleepForMicroseconds(1000000);
      mutex_.Lock();
    }
  }

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  // If !s.ok(), this means that Flush failed. In that case, we want
  // to delete all obsolete files and we force FindObsoleteFiles()
  FindObsoleteFiles(deletion_state, !s.ok());
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  // delete unnecessary files if any, this is done outside the mutex
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  if (deletion_state.HaveSomethingToDelete()) {
    mutex_.Unlock();
    PurgeObsoleteFiles(deletion_state);
    mutex_.Lock();
  }

1679
  bg_flush_scheduled_--;
1680 1681 1682
  if (madeProgress) {
    MaybeScheduleFlushOrCompaction();
  }
1683
  bg_cv_.SignalAll();
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}

1686

1687 1688 1689 1690
void DBImpl::TEST_PurgeObsoleteteWAL() {
  PurgeObsoleteWALFiles();
}

1691
void DBImpl::BackgroundCallCompaction() {
1692
  bool madeProgress = false;
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  DeletionState deletion_state;
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  MaybeDumpStats();

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  MutexLock l(&mutex_);
1698
  // Log(options_.info_log, "XXX BG Thread %llx process new work item", pthread_self());
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  assert(bg_compaction_scheduled_);
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  Status s;
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  if (!shutting_down_.Acquire_Load()) {
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    s = BackgroundCompaction(&madeProgress, deletion_state);
1703 1704 1705 1706 1707 1708 1709 1710 1711
    if (!s.ok()) {
      // Wait a little bit before retrying background compaction in
      // case this is an environmental problem and we do not want to
      // chew up resources for failed compactions for the duration of
      // the problem.
      bg_cv_.SignalAll();  // In case a waiter can proceed despite the error
      Log(options_.info_log, "Waiting after background compaction error: %s",
          s.ToString().c_str());
      mutex_.Unlock();
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      LogFlush(options_.info_log);
1713 1714 1715
      env_->SleepForMicroseconds(1000000);
      mutex_.Lock();
    }
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  }
1717

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  // If !s.ok(), this means that Compaction failed. In that case, we want
  // to delete all obsolete files we might have created and we force
  // FindObsoleteFiles(). This is because deletion_state does not catch
  // all created files if compaction failed.
  FindObsoleteFiles(deletion_state, !s.ok());
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  // delete unnecessary files if any, this is done outside the mutex
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  if (deletion_state.HaveSomethingToDelete()) {
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1725 1726
    mutex_.Unlock();
    PurgeObsoleteFiles(deletion_state);
1727
    mutex_.Lock();
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1728 1729
  }

1730
  bg_compaction_scheduled_--;
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1732 1733
  MaybeScheduleLogDBDeployStats();

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  // Previous compaction may have produced too many files in a level,
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  // So reschedule another compaction if we made progress in the
1736 1737
  // last compaction.
  if (madeProgress) {
1738
    MaybeScheduleFlushOrCompaction();
1739
  }
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  bg_cv_.SignalAll();
1741

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}

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Status DBImpl::BackgroundCompaction(bool* madeProgress,
1745
  DeletionState& deletion_state) {
1746
  *madeProgress = false;
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  mutex_.AssertHeld();
1748

1749
  // TODO: remove memtable flush from formal compaction
1750
  while (imm_.IsFlushPending(options_.min_write_buffer_number_to_merge)) {
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    Log(options_.info_log,
1752 1753
        "BackgroundCompaction doing FlushMemTableToOutputFile, compaction slots "
        "available %d",
1754
        options_.max_background_compactions - bg_compaction_scheduled_);
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    Status stat = FlushMemTableToOutputFile(madeProgress, deletion_state);
1756 1757 1758
    if (!stat.ok()) {
      return stat;
    }
1759 1760
  }

1761
  unique_ptr<Compaction> c;
1762
  bool is_manual = (manual_compaction_ != nullptr) &&
1763
                   (manual_compaction_->in_progress == false);
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  InternalKey manual_end;
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  if (is_manual) {
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    ManualCompaction* m = manual_compaction_;
1767 1768
    assert(!m->in_progress);
    m->in_progress = true; // another thread cannot pick up the same work
1769 1770
    c.reset(versions_->CompactRange(m->level, m->begin, m->end));
    if (c) {
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      manual_end = c->input(0, c->num_input_files(0) - 1)->largest;
1772 1773
    } else {
      m->done = true;
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    }
    Log(options_.info_log,
        "Manual compaction at level-%d from %s .. %s; will stop at %s\n",
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        m->level,
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        (m->begin ? m->begin->DebugString().c_str() : "(begin)"),
        (m->end ? m->end->DebugString().c_str() : "(end)"),
        (m->done ? "(end)" : manual_end.DebugString().c_str()));
1781
  } else if (!options_.disable_auto_compactions) {
1782
    c.reset(versions_->PickCompaction());
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  }

  Status status;
1786
  if (!c) {
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    // Nothing to do
1788
    Log(options_.info_log, "Compaction nothing to do");
H
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1789
  } else if (!is_manual && c->IsTrivialMove()) {
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    // Move file to next level
1791
    assert(c->num_input_files(0) == 1);
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    FileMetaData* f = c->input(0, 0);
    c->edit()->DeleteFile(c->level(), f->number);
    c->edit()->AddFile(c->level() + 1, f->number, f->file_size,
1795 1796
                       f->smallest, f->largest,
                       f->smallest_seqno, f->largest_seqno);
1797
    status = versions_->LogAndApply(c->edit(), &mutex_);
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    VersionSet::LevelSummaryStorage tmp;
1799
    Log(options_.info_log, "Moved #%lld to level-%d %lld bytes %s: %s\n",
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        static_cast<unsigned long long>(f->number),
        c->level() + 1,
        static_cast<unsigned long long>(f->file_size),
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        status.ToString().c_str(),
        versions_->LevelSummary(&tmp));
1805
    versions_->ReleaseCompactionFiles(c.get(), status);
1806
    *madeProgress = true;
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  } else {
1808
    MaybeScheduleFlushOrCompaction(); // do more compaction work in parallel.
1809
    CompactionState* compact = new CompactionState(c.get());
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Igor Canadi 已提交
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    status = DoCompactionWork(compact, deletion_state);
1811
    CleanupCompaction(compact, status);
1812
    versions_->ReleaseCompactionFiles(c.get(), status);
1813
    c->ReleaseInputs();
1814
    *madeProgress = true;
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1815
  }
1816
  c.reset();
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1817 1818 1819 1820 1821 1822

  if (status.ok()) {
    // Done
  } else if (shutting_down_.Acquire_Load()) {
    // Ignore compaction errors found during shutting down
  } else {
1823
    Log(options_.info_log,
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        "Compaction error: %s", status.ToString().c_str());
    if (options_.paranoid_checks && bg_error_.ok()) {
      bg_error_ = status;
    }
  }
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  if (is_manual) {
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    ManualCompaction* m = manual_compaction_;
1832 1833 1834
    if (!status.ok()) {
      m->done = true;
    }
1835 1836 1837 1838 1839 1840 1841 1842 1843 1844 1845 1846
    // For universal compaction:
    //   Because universal compaction always happens at level 0, so one
    //   compaction will pick up all overlapped files. No files will be
    //   filtered out due to size limit and left for a successive compaction.
    //   So we can safely conclude the current compaction.
    //
    //   Also note that, if we don't stop here, then the current compaction
    //   writes a new file back to level 0, which will be used in successive
    //   compaction. Hence the manual compaction will never finish.
    if (options_.compaction_style == kCompactionStyleUniversal) {
      m->done = true;
    }
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    if (!m->done) {
      // We only compacted part of the requested range.  Update *m
      // to the range that is left to be compacted.
      m->tmp_storage = manual_end;
      m->begin = &m->tmp_storage;
    }
1853
    m->in_progress = false; // not being processed anymore
1854
    manual_compaction_ = nullptr;
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1855
  }
1856
  return status;
J
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1857 1858
}

1859
void DBImpl::CleanupCompaction(CompactionState* compact, Status status) {
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1860
  mutex_.AssertHeld();
1861
  if (compact->builder != nullptr) {
J
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1862 1863
    // May happen if we get a shutdown call in the middle of compaction
    compact->builder->Abandon();
1864
    compact->builder.reset();
J
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1865
  } else {
1866
    assert(compact->outfile == nullptr);
J
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1867
  }
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1868
  for (size_t i = 0; i < compact->outputs.size(); i++) {
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    const CompactionState::Output& out = compact->outputs[i];
    pending_outputs_.erase(out.number);
1871 1872 1873 1874 1875 1876

    // If this file was inserted into the table cache then remove
    // them here because this compaction was not committed.
    if (!status.ok()) {
      table_cache_->Evict(out.number);
    }
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  }
  delete compact;
}

1881 1882 1883 1884 1885
// Allocate the file numbers for the output file. We allocate as
// many output file numbers as there are files in level+1.
// Insert them into pending_outputs so that they do not get deleted.
void DBImpl::AllocateCompactionOutputFileNumbers(CompactionState* compact) {
  mutex_.AssertHeld();
1886 1887
  assert(compact != nullptr);
  assert(compact->builder == nullptr);
1888
  int filesNeeded = compact->compaction->num_input_files(1);
1889
  for (int i = 0; i < filesNeeded; i++) {
1890 1891 1892 1893 1894 1895 1896 1897 1898
    uint64_t file_number = versions_->NewFileNumber();
    pending_outputs_.insert(file_number);
    compact->allocated_file_numbers.push_back(file_number);
  }
}

// Frees up unused file number.
void DBImpl::ReleaseCompactionUnusedFileNumbers(CompactionState* compact) {
  mutex_.AssertHeld();
1899
  for (const auto file_number : compact->allocated_file_numbers) {
1900 1901 1902 1903 1904
    pending_outputs_.erase(file_number);
    // Log(options_.info_log, "XXX releasing unused file num %d", file_number);
  }
}

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1905
Status DBImpl::OpenCompactionOutputFile(CompactionState* compact) {
1906 1907
  assert(compact != nullptr);
  assert(compact->builder == nullptr);
J
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1908
  uint64_t file_number;
1909 1910 1911 1912 1913 1914 1915
  // If we have not yet exhausted the pre-allocated file numbers,
  // then use the one from the front. Otherwise, we have to acquire
  // the heavyweight lock and allocate a new file number.
  if (!compact->allocated_file_numbers.empty()) {
    file_number = compact->allocated_file_numbers.front();
    compact->allocated_file_numbers.pop_front();
  } else {
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1916 1917 1918 1919 1920
    mutex_.Lock();
    file_number = versions_->NewFileNumber();
    pending_outputs_.insert(file_number);
    mutex_.Unlock();
  }
1921 1922 1923 1924
  CompactionState::Output out;
  out.number = file_number;
  out.smallest.Clear();
  out.largest.Clear();
1925
  out.smallest_seqno = out.largest_seqno = 0;
1926
  compact->outputs.push_back(out);
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1927 1928 1929

  // Make the output file
  std::string fname = TableFileName(dbname_, file_number);
1930
  Status s = env_->NewWritableFile(fname, &compact->outfile, storage_options_);
1931

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1932
  if (s.ok()) {
1933 1934 1935
    // Over-estimate slightly so we don't end up just barely crossing
    // the threshold.
    compact->outfile->SetPreallocationBlockSize(
1936
      1.1 * versions_->MaxFileSizeForLevel(compact->compaction->output_level()));
1937

S
Siying Dong 已提交
1938 1939 1940 1941
    CompressionType compression_type = GetCompressionType(
        options_, compact->compaction->output_level(),
        compact->compaction->enable_compression());

S
Siying Dong 已提交
1942
    compact->builder.reset(
S
Siying Dong 已提交
1943
        GetTableBuilder(options_, compact->outfile.get(), compression_type));
J
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1944
  }
I
Igor Canadi 已提交
1945
  LogFlush(options_.info_log);
J
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1946 1947 1948 1949 1950
  return s;
}

Status DBImpl::FinishCompactionOutputFile(CompactionState* compact,
                                          Iterator* input) {
1951
  assert(compact != nullptr);
1952
  assert(compact->outfile);
1953
  assert(compact->builder != nullptr);
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jorlow@chromium.org 已提交
1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968

  const uint64_t output_number = compact->current_output()->number;
  assert(output_number != 0);

  // Check for iterator errors
  Status s = input->status();
  const uint64_t current_entries = compact->builder->NumEntries();
  if (s.ok()) {
    s = compact->builder->Finish();
  } else {
    compact->builder->Abandon();
  }
  const uint64_t current_bytes = compact->builder->FileSize();
  compact->current_output()->file_size = current_bytes;
  compact->total_bytes += current_bytes;
1969
  compact->builder.reset();
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1970 1971

  // Finish and check for file errors
1972
  if (s.ok() && !options_.disableDataSync) {
1973
    if (options_.use_fsync) {
1974
      StopWatch sw(env_, options_.statistics, COMPACTION_OUTFILE_SYNC_MICROS);
1975 1976
      s = compact->outfile->Fsync();
    } else {
1977
      StopWatch sw(env_, options_.statistics, COMPACTION_OUTFILE_SYNC_MICROS);
1978 1979
      s = compact->outfile->Sync();
    }
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1980 1981 1982 1983
  }
  if (s.ok()) {
    s = compact->outfile->Close();
  }
1984
  compact->outfile.reset();
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1985 1986 1987

  if (s.ok() && current_entries > 0) {
    // Verify that the table is usable
J
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1988
    Iterator* iter = table_cache_->NewIterator(ReadOptions(),
1989
                                               storage_options_,
J
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1990 1991
                                               output_number,
                                               current_bytes);
J
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1992 1993 1994
    s = iter->status();
    delete iter;
    if (s.ok()) {
1995
      Log(options_.info_log,
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1996 1997 1998 1999
          "Generated table #%lu: %lu keys, %lu bytes",
          (unsigned long) output_number,
          (unsigned long) current_entries,
          (unsigned long) current_bytes);
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    }
  }
  return s;
}


Status DBImpl::InstallCompactionResults(CompactionState* compact) {
  mutex_.AssertHeld();
2008 2009 2010 2011 2012

  // paranoia: verify that the files that we started with
  // still exist in the current version and in the same original level.
  // This ensures that a concurrent compaction did not erroneously
  // pick the same files to compact.
2013
  if (!versions_->VerifyCompactionFileConsistency(compact->compaction)) {
2014 2015 2016 2017 2018 2019 2020 2021
    Log(options_.info_log,  "Compaction %d@%d + %d@%d files aborted",
      compact->compaction->num_input_files(0),
      compact->compaction->level(),
      compact->compaction->num_input_files(1),
      compact->compaction->level() + 1);
    return Status::IOError("Compaction input files inconsistent");
  }

2022
  Log(options_.info_log,  "Compacted %d@%d + %d@%d files => %lld bytes",
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      compact->compaction->num_input_files(0),
      compact->compaction->level(),
      compact->compaction->num_input_files(1),
      compact->compaction->level() + 1,
      static_cast<long long>(compact->total_bytes));

  // Add compaction outputs
  compact->compaction->AddInputDeletions(compact->compaction->edit());
  const int level = compact->compaction->level();
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2032
  for (size_t i = 0; i < compact->outputs.size(); i++) {
J
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2033 2034
    const CompactionState::Output& out = compact->outputs[i];
    compact->compaction->edit()->AddFile(
2035 2036
        (options_.compaction_style == kCompactionStyleUniversal) ?
          level : level + 1,
2037 2038
        out.number, out.file_size, out.smallest, out.largest,
        out.smallest_seqno, out.largest_seqno);
J
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2039
  }
2040
  return versions_->LogAndApply(compact->compaction->edit(), &mutex_);
J
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2041 2042
}

2043 2044 2045 2046 2047 2048 2049 2050
//
// Given a sequence number, return the sequence number of the
// earliest snapshot that this sequence number is visible in.
// The snapshots themselves are arranged in ascending order of
// sequence numbers.
// Employ a sequential search because the total number of
// snapshots are typically small.
inline SequenceNumber DBImpl::findEarliestVisibleSnapshot(
2051 2052
  SequenceNumber in, std::vector<SequenceNumber>& snapshots,
  SequenceNumber* prev_snapshot) {
2053
  SequenceNumber prev __attribute__((unused)) = 0;
2054 2055 2056
  for (const auto cur : snapshots) {
    assert(prev <= cur);
    if (cur >= in) {
2057
      *prev_snapshot = prev;
2058
      return cur;
2059
    }
2060 2061
    prev = cur; // assignment
    assert(prev);
2062 2063
  }
  Log(options_.info_log,
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Kai Liu 已提交
2064 2065 2066
      "Looking for seqid %lu but maxseqid is %lu",
      (unsigned long)in,
      (unsigned long)snapshots[snapshots.size()-1]);
2067 2068 2069 2070
  assert(0);
  return 0;
}

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Igor Canadi 已提交
2071 2072
Status DBImpl::DoCompactionWork(CompactionState* compact,
                                DeletionState& deletion_state) {
2073
  assert(compact);
2074
  int64_t imm_micros = 0;  // Micros spent doing imm_ compactions
A
Abhishek Kona 已提交
2075
  Log(options_.info_log,
2076
      "Compacting %d@%d + %d@%d files, score %.2f slots available %d",
J
jorlow@chromium.org 已提交
2077 2078 2079
      compact->compaction->num_input_files(0),
      compact->compaction->level(),
      compact->compaction->num_input_files(1),
2080
      compact->compaction->level() + 1,
2081
      compact->compaction->score(),
2082
      options_.max_background_compactions - bg_compaction_scheduled_);
2083 2084
  char scratch[256];
  compact->compaction->Summary(scratch, sizeof(scratch));
H
heyongqiang 已提交
2085
  Log(options_.info_log, "Compaction start summary: %s\n", scratch);
J
jorlow@chromium.org 已提交
2086 2087

  assert(versions_->NumLevelFiles(compact->compaction->level()) > 0);
2088
  assert(compact->builder == nullptr);
2089
  assert(!compact->outfile);
2090 2091 2092

  SequenceNumber visible_at_tip = 0;
  SequenceNumber earliest_snapshot;
H
Haobo Xu 已提交
2093
  SequenceNumber latest_snapshot = 0;
2094 2095 2096 2097 2098
  snapshots_.getAll(compact->existing_snapshots);
  if (compact->existing_snapshots.size() == 0) {
    // optimize for fast path if there are no snapshots
    visible_at_tip = versions_->LastSequence();
    earliest_snapshot = visible_at_tip;
J
jorlow@chromium.org 已提交
2099
  } else {
H
Haobo Xu 已提交
2100
    latest_snapshot = compact->existing_snapshots.back();
2101 2102 2103 2104
    // Add the current seqno as the 'latest' virtual
    // snapshot to the end of this list.
    compact->existing_snapshots.push_back(versions_->LastSequence());
    earliest_snapshot = compact->existing_snapshots[0];
J
jorlow@chromium.org 已提交
2105 2106
  }

2107
  // Is this compaction producing files at the bottommost level?
2108
  bool bottommost_level = compact->compaction->BottomMostLevel();
2109

2110 2111 2112
  // Allocate the output file numbers before we release the lock
  AllocateCompactionOutputFileNumbers(compact);

J
jorlow@chromium.org 已提交
2113 2114 2115
  // Release mutex while we're actually doing the compaction work
  mutex_.Unlock();

2116
  const uint64_t start_micros = env_->NowMicros();
2117
  unique_ptr<Iterator> input(versions_->MakeInputIterator(compact->compaction));
J
jorlow@chromium.org 已提交
2118 2119 2120 2121 2122
  input->SeekToFirst();
  Status status;
  ParsedInternalKey ikey;
  std::string current_user_key;
  bool has_current_user_key = false;
2123 2124
  SequenceNumber last_sequence_for_key __attribute__((unused)) =
    kMaxSequenceNumber;
2125
  SequenceNumber visible_in_snapshot = kMaxSequenceNumber;
H
Haobo Xu 已提交
2126
  std::string compaction_filter_value;
H
Haobo Xu 已提交
2127
  std::vector<char> delete_key; // for compaction filter
2128
  MergeHelper merge(user_comparator(), options_.merge_operator.get(),
2129 2130
                    options_.info_log.get(),
                    false /* internal key corruption is expected */);
2131 2132 2133
  auto compaction_filter = options_.compaction_filter;
  std::unique_ptr<CompactionFilter> compaction_filter_from_factory = nullptr;
  if (!compaction_filter) {
2134 2135 2136
    auto context = compact->GetFilterContext();
    compaction_filter_from_factory =
      options_.compaction_filter_factory->CreateCompactionFilter(context);
2137 2138
    compaction_filter = compaction_filter_from_factory.get();
  }
2139

J
jorlow@chromium.org 已提交
2140
  for (; input->Valid() && !shutting_down_.Acquire_Load(); ) {
2141
    // Prioritize immutable compaction work
2142
    // TODO: remove memtable flush from normal compaction work
2143
    if (imm_.imm_flush_needed.NoBarrier_Load() != nullptr) {
2144
      const uint64_t imm_start = env_->NowMicros();
I
Igor Canadi 已提交
2145
      LogFlush(options_.info_log);
2146
      mutex_.Lock();
2147
      if (imm_.IsFlushPending(options_.min_write_buffer_number_to_merge)) {
I
Igor Canadi 已提交
2148
        FlushMemTableToOutputFile(nullptr, deletion_state);
H
hans@chromium.org 已提交
2149
        bg_cv_.SignalAll();  // Wakeup MakeRoomForWrite() if necessary
2150 2151 2152 2153 2154
      }
      mutex_.Unlock();
      imm_micros += (env_->NowMicros() - imm_start);
    }

J
jorlow@chromium.org 已提交
2155
    Slice key = input->key();
2156
    Slice value = input->value();
H
Haobo Xu 已提交
2157

2158
    if (compact->compaction->ShouldStopBefore(key) &&
2159
        compact->builder != nullptr) {
2160
      status = FinishCompactionOutputFile(compact, input.get());
2161 2162 2163 2164 2165 2166
      if (!status.ok()) {
        break;
      }
    }

    // Handle key/value, add to state, etc.
J
jorlow@chromium.org 已提交
2167
    bool drop = false;
2168
    bool current_entry_is_merging = false;
J
jorlow@chromium.org 已提交
2169 2170
    if (!ParseInternalKey(key, &ikey)) {
      // Do not hide error keys
2171 2172
      // TODO: error key stays in db forever? Figure out the intention/rationale
      // v10 error v8 : we cannot hide v8 even though it's pretty obvious.
J
jorlow@chromium.org 已提交
2173 2174 2175
      current_user_key.clear();
      has_current_user_key = false;
      last_sequence_for_key = kMaxSequenceNumber;
2176
      visible_in_snapshot = kMaxSequenceNumber;
J
jorlow@chromium.org 已提交
2177 2178 2179 2180 2181 2182 2183 2184
    } else {
      if (!has_current_user_key ||
          user_comparator()->Compare(ikey.user_key,
                                     Slice(current_user_key)) != 0) {
        // First occurrence of this user key
        current_user_key.assign(ikey.user_key.data(), ikey.user_key.size());
        has_current_user_key = true;
        last_sequence_for_key = kMaxSequenceNumber;
2185
        visible_in_snapshot = kMaxSequenceNumber;
H
Haobo Xu 已提交
2186 2187

        // apply the compaction filter to the first occurrence of the user key
2188
        if (compaction_filter &&
H
Haobo Xu 已提交
2189 2190 2191 2192 2193 2194 2195 2196 2197 2198
            ikey.type == kTypeValue &&
            (visible_at_tip || ikey.sequence > latest_snapshot)) {
          // If the user has specified a compaction filter and the sequence
          // number is greater than any external snapshot, then invoke the
          // filter.
          // If the return value of the compaction filter is true, replace
          // the entry with a delete marker.
          bool value_changed = false;
          compaction_filter_value.clear();
          bool to_delete =
2199
            compaction_filter->Filter(compact->compaction->level(),
S
Siying Dong 已提交
2200 2201 2202
                                               ikey.user_key, value,
                                               &compaction_filter_value,
                                               &value_changed);
H
Haobo Xu 已提交
2203 2204 2205 2206 2207 2208 2209 2210 2211 2212 2213 2214 2215 2216 2217 2218 2219 2220
          if (to_delete) {
            // make a copy of the original key
            delete_key.assign(key.data(), key.data() + key.size());
            // convert it to a delete
            UpdateInternalKey(&delete_key[0], delete_key.size(),
                              ikey.sequence, kTypeDeletion);
            // anchor the key again
            key = Slice(&delete_key[0], delete_key.size());
            // needed because ikey is backed by key
            ParseInternalKey(key, &ikey);
            // no value associated with delete
            value.clear();
            RecordTick(options_.statistics, COMPACTION_KEY_DROP_USER);
          } else if (value_changed) {
            value = compaction_filter_value;
          }
        }

J
jorlow@chromium.org 已提交
2221 2222
      }

2223 2224 2225
      // If there are no snapshots, then this kv affect visibility at tip.
      // Otherwise, search though all existing snapshots to find
      // the earlist snapshot that is affected by this kv.
2226 2227 2228 2229 2230 2231
      SequenceNumber prev_snapshot = 0; // 0 means no previous snapshot
      SequenceNumber visible = visible_at_tip ?
        visible_at_tip :
        findEarliestVisibleSnapshot(ikey.sequence,
                                    compact->existing_snapshots,
                                    &prev_snapshot);
2232 2233 2234 2235 2236

      if (visible_in_snapshot == visible) {
        // If the earliest snapshot is which this key is visible in
        // is the same as the visibily of a previous instance of the
        // same key, then this kv is not visible in any snapshot.
J
jorlow@chromium.org 已提交
2237
        // Hidden by an newer entry for same user key
2238
        // TODO: why not > ?
2239
        assert(last_sequence_for_key >= ikey.sequence);
J
jorlow@chromium.org 已提交
2240
        drop = true;    // (A)
2241
        RecordTick(options_.statistics, COMPACTION_KEY_DROP_NEWER_ENTRY);
J
jorlow@chromium.org 已提交
2242
      } else if (ikey.type == kTypeDeletion &&
2243
                 ikey.sequence <= earliest_snapshot &&
J
jorlow@chromium.org 已提交
2244 2245 2246 2247 2248 2249 2250 2251 2252
                 compact->compaction->IsBaseLevelForKey(ikey.user_key)) {
        // For this user key:
        // (1) there is no data in higher levels
        // (2) data in lower levels will have larger sequence numbers
        // (3) data in layers that are being compacted here and have
        //     smaller sequence numbers will be dropped in the next
        //     few iterations of this loop (by rule (A) above).
        // Therefore this deletion marker is obsolete and can be dropped.
        drop = true;
2253
        RecordTick(options_.statistics, COMPACTION_KEY_DROP_OBSOLETE);
2254 2255 2256 2257 2258 2259 2260
      } else if (ikey.type == kTypeMerge) {
        // We know the merge type entry is not hidden, otherwise we would
        // have hit (A)
        // We encapsulate the merge related state machine in a different
        // object to minimize change to the existing flow. Turn out this
        // logic could also be nicely re-used for memtable flush purge
        // optimization in BuildTable.
M
Mayank Agarwal 已提交
2261 2262
        merge.MergeUntil(input.get(), prev_snapshot, bottommost_level,
                         options_.statistics);
2263 2264 2265 2266 2267 2268 2269 2270 2271 2272 2273 2274 2275 2276 2277 2278 2279 2280
        current_entry_is_merging = true;
        if (merge.IsSuccess()) {
          // Successfully found Put/Delete/(end-of-key-range) while merging
          // Get the merge result
          key = merge.key();
          ParseInternalKey(key, &ikey);
          value = merge.value();
        } else {
          // Did not find a Put/Delete/(end-of-key-range) while merging
          // We now have some stack of merge operands to write out.
          // NOTE: key,value, and ikey are now referring to old entries.
          //       These will be correctly set below.
          assert(!merge.keys().empty());
          assert(merge.keys().size() == merge.values().size());

          // Hack to make sure last_sequence_for_key is correct
          ParseInternalKey(merge.keys().front(), &ikey);
        }
J
jorlow@chromium.org 已提交
2281 2282 2283
      }

      last_sequence_for_key = ikey.sequence;
2284
      visible_in_snapshot = visible;
J
jorlow@chromium.org 已提交
2285 2286
    }
#if 0
2287
    Log(options_.info_log,
J
jorlow@chromium.org 已提交
2288
        "  Compact: %s, seq %d, type: %d %d, drop: %d, is_base: %d, "
2289
        "%d smallest_snapshot: %d level: %d bottommost %d",
J
jorlow@chromium.org 已提交
2290
        ikey.user_key.ToString().c_str(),
D
dgrogan@chromium.org 已提交
2291
        (int)ikey.sequence, ikey.type, kTypeValue, drop,
J
jorlow@chromium.org 已提交
2292
        compact->compaction->IsBaseLevelForKey(ikey.user_key),
2293 2294
        (int)last_sequence_for_key, (int)earliest_snapshot,
        compact->compaction->level(), bottommost_level);
J
jorlow@chromium.org 已提交
2295 2296 2297
#endif

    if (!drop) {
2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313
      // We may write a single key (e.g.: for Put/Delete or successful merge).
      // Or we may instead have to write a sequence/list of keys.
      // We have to write a sequence iff we have an unsuccessful merge
      bool has_merge_list = current_entry_is_merging && !merge.IsSuccess();
      const std::deque<std::string>* keys = nullptr;
      const std::deque<std::string>* values = nullptr;
      std::deque<std::string>::const_reverse_iterator key_iter;
      std::deque<std::string>::const_reverse_iterator value_iter;
      if (has_merge_list) {
        keys = &merge.keys();
        values = &merge.values();
        key_iter = keys->rbegin();    // The back (*rbegin()) is the first key
        value_iter = values->rbegin();

        key = Slice(*key_iter);
        value = Slice(*value_iter);
2314
      }
2315

2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326
      // If we have a list of keys to write, traverse the list.
      // If we have a single key to write, simply write that key.
      while (true) {
        // Invariant: key,value,ikey will always be the next entry to write
        char* kptr = (char*)key.data();
        std::string kstr;

        // Zeroing out the sequence number leads to better compression.
        // If this is the bottommost level (no files in lower levels)
        // and the earliest snapshot is larger than this seqno
        // then we can squash the seqno to zero.
2327 2328
        if (options_.compaction_style == kCompactionStyleLevel &&
            bottommost_level && ikey.sequence < earliest_snapshot &&
2329 2330 2331 2332 2333 2334 2335 2336 2337 2338 2339
            ikey.type != kTypeMerge) {
          assert(ikey.type != kTypeDeletion);
          // make a copy because updating in place would cause problems
          // with the priority queue that is managing the input key iterator
          kstr.assign(key.data(), key.size());
          kptr = (char *)kstr.c_str();
          UpdateInternalKey(kptr, key.size(), (uint64_t)0, ikey.type);
        }

        Slice newkey(kptr, key.size());
        assert((key.clear(), 1)); // we do not need 'key' anymore
2340

2341 2342 2343 2344 2345 2346 2347
        // Open output file if necessary
        if (compact->builder == nullptr) {
          status = OpenCompactionOutputFile(compact);
          if (!status.ok()) {
            break;
          }
        }
2348 2349

        SequenceNumber seqno = GetInternalKeySeqno(newkey);
2350 2351
        if (compact->builder->NumEntries() == 0) {
          compact->current_output()->smallest.DecodeFrom(newkey);
2352 2353 2354 2355
          compact->current_output()->smallest_seqno = seqno;
        } else {
          compact->current_output()->smallest_seqno =
            std::min(compact->current_output()->smallest_seqno, seqno);
2356 2357 2358
        }
        compact->current_output()->largest.DecodeFrom(newkey);
        compact->builder->Add(newkey, value);
2359 2360
        compact->current_output()->largest_seqno =
          std::max(compact->current_output()->largest_seqno, seqno);
2361 2362 2363 2364 2365 2366 2367 2368

        // Close output file if it is big enough
        if (compact->builder->FileSize() >=
            compact->compaction->MaxOutputFileSize()) {
          status = FinishCompactionOutputFile(compact, input.get());
          if (!status.ok()) {
            break;
          }
J
jorlow@chromium.org 已提交
2369 2370
        }

2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389 2390
        // If we have a list of entries, move to next element
        // If we only had one entry, then break the loop.
        if (has_merge_list) {
          ++key_iter;
          ++value_iter;

          // If at end of list
          if (key_iter == keys->rend() || value_iter == values->rend()) {
            // Sanity Check: if one ends, then both end
            assert(key_iter == keys->rend() && value_iter == values->rend());
            break;
          }

          // Otherwise not at end of list. Update key, value, and ikey.
          key = Slice(*key_iter);
          value = Slice(*value_iter);
          ParseInternalKey(key, &ikey);

        } else{
          // Only had one item to begin with (Put/Delete)
J
jorlow@chromium.org 已提交
2391 2392 2393 2394 2395
          break;
        }
      }
    }

2396
    // MergeUntil has moved input to the next entry
2397
    if (!current_entry_is_merging) {
2398 2399
      input->Next();
    }
J
jorlow@chromium.org 已提交
2400 2401 2402
  }

  if (status.ok() && shutting_down_.Acquire_Load()) {
2403
    status = Status::IOError("Database shutdown started during compaction");
J
jorlow@chromium.org 已提交
2404
  }
2405
  if (status.ok() && compact->builder != nullptr) {
2406
    status = FinishCompactionOutputFile(compact, input.get());
J
jorlow@chromium.org 已提交
2407 2408 2409 2410
  }
  if (status.ok()) {
    status = input->status();
  }
2411
  input.reset();
J
jorlow@chromium.org 已提交
2412

2413 2414
  CompactionStats stats;
  stats.micros = env_->NowMicros() - start_micros - imm_micros;
A
Abhishek Kona 已提交
2415 2416 2417
  if (options_.statistics) {
    options_.statistics->measureTime(COMPACTION_TIME, stats.micros);
  }
M
Mark Callaghan 已提交
2418 2419
  stats.files_in_leveln = compact->compaction->num_input_files(0);
  stats.files_in_levelnp1 = compact->compaction->num_input_files(1);
2420 2421

  int num_output_files = compact->outputs.size();
2422
  if (compact->builder != nullptr) {
P
Pascal Borreli 已提交
2423
    // An error occurred so ignore the last output.
2424 2425 2426 2427
    assert(num_output_files > 0);
    --num_output_files;
  }
  stats.files_out_levelnp1 = num_output_files;
M
Mark Callaghan 已提交
2428 2429 2430 2431 2432 2433 2434

  for (int i = 0; i < compact->compaction->num_input_files(0); i++)
    stats.bytes_readn += compact->compaction->input(0, i)->file_size;

  for (int i = 0; i < compact->compaction->num_input_files(1); i++)
    stats.bytes_readnp1 += compact->compaction->input(1, i)->file_size;

2435
  for (int i = 0; i < num_output_files; i++) {
2436 2437 2438
    stats.bytes_written += compact->outputs[i].file_size;
  }

I
Igor Canadi 已提交
2439
  LogFlush(options_.info_log);
J
jorlow@chromium.org 已提交
2440
  mutex_.Lock();
2441
  stats_[compact->compaction->output_level()].Add(stats);
J
jorlow@chromium.org 已提交
2442

2443 2444 2445 2446
  // if there were any unused file number (mostly in case of
  // compaction error), free up the entry from pending_putputs
  ReleaseCompactionUnusedFileNumbers(compact);

J
jorlow@chromium.org 已提交
2447 2448 2449
  if (status.ok()) {
    status = InstallCompactionResults(compact);
  }
2450
  VersionSet::LevelSummaryStorage tmp;
2451
  Log(options_.info_log,
M
Mark Callaghan 已提交
2452
      "compacted to: %s, %.1f MB/sec, level %d, files in(%d, %d) out(%d) "
2453 2454
      "MB in(%.1f, %.1f) out(%.1f), read-write-amplify(%.1f) "
      "write-amplify(%.1f) %s\n",
M
Mark Callaghan 已提交
2455 2456 2457
      versions_->LevelSummary(&tmp),
      (stats.bytes_readn + stats.bytes_readnp1 + stats.bytes_written) /
          (double) stats.micros,
2458
      compact->compaction->output_level(),
M
Mark Callaghan 已提交
2459 2460 2461 2462
      stats.files_in_leveln, stats.files_in_levelnp1, stats.files_out_levelnp1,
      stats.bytes_readn / 1048576.0,
      stats.bytes_readnp1 / 1048576.0,
      stats.bytes_written / 1048576.0,
2463
      (stats.bytes_written + stats.bytes_readnp1 + stats.bytes_readn) /
2464
          (double) stats.bytes_readn,
2465
      stats.bytes_written / (double) stats.bytes_readn,
2466
      status.ToString().c_str());
M
Mark Callaghan 已提交
2467

J
jorlow@chromium.org 已提交
2468 2469 2470
  return status;
}

2471 2472 2473 2474
namespace {
struct IterState {
  port::Mutex* mu;
  Version* version;
2475
  std::vector<MemTable*> mem; // includes both mem_ and imm_
I
Igor Canadi 已提交
2476
  DBImpl *db;
2477 2478 2479 2480 2481
};

static void CleanupIteratorState(void* arg1, void* arg2) {
  IterState* state = reinterpret_cast<IterState*>(arg1);
  state->mu->Lock();
2482 2483 2484
  for (unsigned int i = 0; i < state->mem.size(); i++) {
    state->mem[i]->Unref();
  }
2485
  state->version->Unref();
I
Igor Canadi 已提交
2486 2487 2488 2489
  // delete only the sst obsolete files
  DBImpl::DeletionState deletion_state;
  // fast path FindObsoleteFiles
  state->db->FindObsoleteFiles(deletion_state, false, true);
2490
  state->mu->Unlock();
I
Igor Canadi 已提交
2491
  state->db->PurgeObsoleteFiles(deletion_state);
2492 2493
  delete state;
}
H
Hans Wennborg 已提交
2494
}  // namespace
2495

J
jorlow@chromium.org 已提交
2496 2497
Iterator* DBImpl::NewInternalIterator(const ReadOptions& options,
                                      SequenceNumber* latest_snapshot) {
2498
  IterState* cleanup = new IterState;
J
jorlow@chromium.org 已提交
2499
  mutex_.Lock();
2500
  *latest_snapshot = versions_->LastSequence();
J
jorlow@chromium.org 已提交
2501

2502
  // Collect together all needed child iterators for mem
J
jorlow@chromium.org 已提交
2503
  std::vector<Iterator*> list;
2504
  mem_->Ref();
2505
  list.push_back(mem_->NewIterator(options));
J
Jim Paton 已提交
2506

2507 2508 2509 2510 2511 2512 2513 2514
  cleanup->mem.push_back(mem_);

  // Collect together all needed child iterators for imm_
  std::vector<MemTable*> immutables;
  imm_.GetMemTables(&immutables);
  for (unsigned int i = 0; i < immutables.size(); i++) {
    MemTable* m = immutables[i];
    m->Ref();
2515
    list.push_back(m->NewIterator(options));
2516
    cleanup->mem.push_back(m);
2517
  }
2518 2519

  // Collect iterators for files in L0 - Ln
2520
  versions_->current()->AddIterators(options, storage_options_, &list);
J
jorlow@chromium.org 已提交
2521
  Iterator* internal_iter =
2522
      NewMergingIterator(env_, &internal_comparator_, &list[0], list.size());
J
jorlow@chromium.org 已提交
2523
  versions_->current()->Ref();
2524 2525

  cleanup->mu = &mutex_;
I
Igor Canadi 已提交
2526
  cleanup->db = this;
2527
  cleanup->version = versions_->current();
2528
  internal_iter->RegisterCleanup(CleanupIteratorState, cleanup, nullptr);
J
jorlow@chromium.org 已提交
2529 2530

  mutex_.Unlock();
I
Igor Canadi 已提交
2531
  LogFlush(options_.info_log);
J
jorlow@chromium.org 已提交
2532 2533 2534 2535 2536 2537 2538 2539
  return internal_iter;
}

Iterator* DBImpl::TEST_NewInternalIterator() {
  SequenceNumber ignored;
  return NewInternalIterator(ReadOptions(), &ignored);
}

J
jorlow@chromium.org 已提交
2540
int64_t DBImpl::TEST_MaxNextLevelOverlappingBytes() {
2541 2542 2543 2544
  MutexLock l(&mutex_);
  return versions_->MaxNextLevelOverlappingBytes();
}

J
jorlow@chromium.org 已提交
2545 2546 2547
Status DBImpl::Get(const ReadOptions& options,
                   const Slice& key,
                   std::string* value) {
2548 2549 2550 2551 2552 2553
  return GetImpl(options, key, value);
}

Status DBImpl::GetImpl(const ReadOptions& options,
                       const Slice& key,
                       std::string* value,
2554
                       bool* value_found) {
2555
  Status s;
2556

2557
  StopWatch sw(env_, options_.statistics, DB_GET);
2558 2559
  StopWatchNano snapshot_timer(env_, false);
  StartPerfTimer(&snapshot_timer);
2560
  SequenceNumber snapshot;
2561
  mutex_.Lock();
2562
  if (options.snapshot != nullptr) {
2563 2564 2565
    snapshot = reinterpret_cast<const SnapshotImpl*>(options.snapshot)->number_;
  } else {
    snapshot = versions_->LastSequence();
J
jorlow@chromium.org 已提交
2566
  }
2567

2568
  MemTable* mem = mem_;
2569
  MemTableList imm = imm_;
2570
  Version* current = versions_->current();
2571
  mem->Ref();
2572
  imm.RefAll();
2573
  current->Ref();
2574

2575 2576
  // Unlock while reading from files and memtables
  mutex_.Unlock();
2577
  bool have_stat_update = false;
2578
  Version::GetStats stats;
2579

2580 2581 2582 2583

  // Prepare to store a list of merge operations if merge occurs.
  std::deque<std::string> merge_operands;

2584
  // First look in the memtable, then in the immutable memtable (if any).
2585
  // s is both in/out. When in, s could either be OK or MergeInProgress.
2586
  // merge_operands will contain the sequence of merges in the latter case.
2587
  LookupKey lkey(key, snapshot);
2588
  BumpPerfTime(&perf_context.get_snapshot_time, &snapshot_timer);
2589
  if (mem->Get(lkey, value, &s, &merge_operands, options_)) {
2590
    // Done
2591
  } else if (imm.Get(lkey, value, &s, &merge_operands, options_)) {
2592 2593
    // Done
  } else {
2594 2595 2596
    StopWatchNano from_files_timer(env_, false);
    StartPerfTimer(&from_files_timer);

2597
    current->Get(options, lkey, value, &s, &merge_operands, &stats,
2598
                 options_, value_found);
2599
    have_stat_update = true;
2600
    BumpPerfTime(&perf_context.get_from_output_files_time, &from_files_timer);
2601
  }
2602 2603 2604

  StopWatchNano post_process_timer(env_, false);
  StartPerfTimer(&post_process_timer);
2605
  mutex_.Lock();
2606

2607 2608
  if (!options_.disable_seek_compaction &&
      have_stat_update && current->UpdateStats(stats)) {
2609
    MaybeScheduleFlushOrCompaction();
2610
  }
2611
  mem->Unref();
2612
  imm.UnrefAll();
2613
  current->Unref();
2614 2615
  mutex_.Unlock();

I
Igor Canadi 已提交
2616
  LogFlush(options_.info_log);
2617
  // Note, tickers are atomic now - no lock protection needed any more.
2618
  RecordTick(options_.statistics, NUMBER_KEYS_READ);
2619
  RecordTick(options_.statistics, BYTES_READ, value->size());
2620 2621
  BumpPerfTime(&perf_context.get_post_process_time, &post_process_timer);

2622
  return s;
J
jorlow@chromium.org 已提交
2623 2624
}

2625 2626 2627 2628 2629
std::vector<Status> DBImpl::MultiGet(const ReadOptions& options,
                                     const std::vector<Slice>& keys,
                                     std::vector<std::string>* values) {

  StopWatch sw(env_, options_.statistics, DB_MULTIGET);
2630 2631
  StopWatchNano snapshot_timer(env_, false);
  StartPerfTimer(&snapshot_timer);
2632
  SequenceNumber snapshot;
2633
  mutex_.Lock();
2634 2635 2636 2637 2638 2639 2640 2641 2642 2643 2644 2645 2646 2647 2648 2649 2650 2651 2652
  if (options.snapshot != nullptr) {
    snapshot = reinterpret_cast<const SnapshotImpl*>(options.snapshot)->number_;
  } else {
    snapshot = versions_->LastSequence();
  }

  MemTable* mem = mem_;
  MemTableList imm = imm_;
  Version* current = versions_->current();
  mem->Ref();
  imm.RefAll();
  current->Ref();

  // Unlock while reading from files and memtables

  mutex_.Unlock();
  bool have_stat_update = false;
  Version::GetStats stats;

2653 2654 2655
  // Prepare to store a list of merge operations if merge occurs.
  std::deque<std::string> merge_operands;

2656 2657 2658 2659 2660 2661 2662
  // Note: this always resizes the values array
  int numKeys = keys.size();
  std::vector<Status> statList(numKeys);
  values->resize(numKeys);

  // Keep track of bytes that we read for statistics-recording later
  uint64_t bytesRead = 0;
2663
  BumpPerfTime(&perf_context.get_snapshot_time, &snapshot_timer);
2664 2665 2666 2667

  // 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.
2668 2669 2670
  // merge_operands will contain the sequence of merges in the latter case.
  for (int i=0; i<numKeys; ++i) {
    merge_operands.clear();
2671 2672 2673 2674
    Status& s = statList[i];
    std::string* value = &(*values)[i];

    LookupKey lkey(keys[i], snapshot);
2675
    if (mem->Get(lkey, value, &s, &merge_operands, options_)) {
2676
      // Done
2677
    } else if (imm.Get(lkey, value, &s, &merge_operands, options_)) {
2678 2679
      // Done
    } else {
2680
      current->Get(options, lkey, value, &s, &merge_operands, &stats, options_);
2681 2682 2683 2684 2685 2686 2687 2688 2689
      have_stat_update = true;
    }

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

  // Post processing (decrement reference counts and record statistics)
2690 2691
  StopWatchNano post_process_timer(env_, false);
  StartPerfTimer(&post_process_timer);
2692 2693 2694
  mutex_.Lock();
  if (!options_.disable_seek_compaction &&
      have_stat_update && current->UpdateStats(stats)) {
2695
    MaybeScheduleFlushOrCompaction();
2696 2697 2698 2699
  }
  mem->Unref();
  imm.UnrefAll();
  current->Unref();
2700 2701
  mutex_.Unlock();

I
Igor Canadi 已提交
2702
  LogFlush(options_.info_log);
2703 2704 2705
  RecordTick(options_.statistics, NUMBER_MULTIGET_CALLS);
  RecordTick(options_.statistics, NUMBER_MULTIGET_KEYS_READ, numKeys);
  RecordTick(options_.statistics, NUMBER_MULTIGET_BYTES_READ, bytesRead);
2706
  BumpPerfTime(&perf_context.get_post_process_time, &post_process_timer);
2707 2708 2709 2710

  return statList;
}

2711 2712 2713 2714 2715
bool DBImpl::KeyMayExist(const ReadOptions& options,
                         const Slice& key,
                         std::string* value,
                         bool* value_found) {
  if (value_found != nullptr) {
K
Kai Liu 已提交
2716 2717
    // falsify later if key-may-exist but can't fetch value
    *value_found = true;
2718
  }
2719 2720
  ReadOptions roptions = options;
  roptions.read_tier = kBlockCacheTier; // read from block cache only
K
Kai Liu 已提交
2721 2722 2723 2724 2725 2726
  auto s = GetImpl(roptions, key, value, value_found);

  // If options.block_cache != nullptr and the index block of the table didn't
  // 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();
2727 2728
}

J
jorlow@chromium.org 已提交
2729 2730
Iterator* DBImpl::NewIterator(const ReadOptions& options) {
  SequenceNumber latest_snapshot;
T
Tyler Harter 已提交
2731 2732 2733 2734 2735 2736 2737 2738 2739 2740 2741 2742 2743
  Iterator* iter = NewInternalIterator(options, &latest_snapshot);
  iter = NewDBIterator(
             &dbname_, env_, options_, user_comparator(), iter,
             (options.snapshot != nullptr
              ? reinterpret_cast<const SnapshotImpl*>(options.snapshot)->number_
              : latest_snapshot));
  if (options.prefix) {
    // use extra wrapper to exclude any keys from the results which
    // don't begin with the prefix
    iter = new PrefixFilterIterator(iter, *options.prefix,
                                    options_.prefix_extractor);
  }
  return iter;
J
jorlow@chromium.org 已提交
2744 2745 2746 2747
}

const Snapshot* DBImpl::GetSnapshot() {
  MutexLock l(&mutex_);
2748
  return snapshots_.New(versions_->LastSequence());
J
jorlow@chromium.org 已提交
2749 2750 2751 2752
}

void DBImpl::ReleaseSnapshot(const Snapshot* s) {
  MutexLock l(&mutex_);
2753
  snapshots_.Delete(reinterpret_cast<const SnapshotImpl*>(s));
J
jorlow@chromium.org 已提交
2754 2755 2756 2757 2758 2759 2760
}

// Convenience methods
Status DBImpl::Put(const WriteOptions& o, const Slice& key, const Slice& val) {
  return DB::Put(o, key, val);
}

2761 2762 2763 2764 2765 2766 2767 2768 2769
Status DBImpl::Merge(const WriteOptions& o, const Slice& key,
                     const Slice& val) {
  if (!options_.merge_operator) {
    return Status::NotSupported("Provide a merge_operator when opening DB");
  } else {
    return DB::Merge(o, key, val);
  }
}

J
jorlow@chromium.org 已提交
2770 2771 2772 2773
Status DBImpl::Delete(const WriteOptions& options, const Slice& key) {
  return DB::Delete(options, key);
}

2774
Status DBImpl::Write(const WriteOptions& options, WriteBatch* my_batch) {
2775 2776
  StopWatchNano pre_post_process_timer(env_, false);
  StartPerfTimer(&pre_post_process_timer);
2777 2778 2779
  Writer w(&mutex_);
  w.batch = my_batch;
  w.sync = options.sync;
H
heyongqiang 已提交
2780
  w.disableWAL = options.disableWAL;
2781
  w.done = false;
2782

2783
  StopWatch sw(env_, options_.statistics, DB_WRITE);
2784
  MutexLock l(&mutex_);
2785 2786 2787 2788 2789 2790
  writers_.push_back(&w);
  while (!w.done && &w != writers_.front()) {
    w.cv.Wait();
  }
  if (w.done) {
    return w.status;
2791 2792 2793
  }

  // May temporarily unlock and wait.
2794
  Status status = MakeRoomForWrite(my_batch == nullptr);
D
dgrogan@chromium.org 已提交
2795
  uint64_t last_sequence = versions_->LastSequence();
2796
  Writer* last_writer = &w;
2797
  if (status.ok() && my_batch != nullptr) {  // nullptr batch is for compactions
2798 2799 2800 2801 2802
    // TODO: BuildBatchGroup physically concatenate/copy all write batches into
    // a new one. Mem copy is done with the lock held. Ideally, we only need
    // the lock to obtain the last_writer and the references to all batches.
    // Creation (copy) of the merged batch could have been done outside of the
    // lock protected region.
2803
    WriteBatch* updates = BuildBatchGroup(&last_writer);
2804

2805 2806 2807 2808
    // Add to log and apply to memtable.  We can release the lock
    // during this phase since &w is currently responsible for logging
    // and protects against concurrent loggers and concurrent writes
    // into mem_.
2809
    {
2810
      mutex_.Unlock();
2811 2812 2813 2814 2815 2816 2817 2818 2819
      const SequenceNumber current_sequence = last_sequence + 1;
      WriteBatchInternal::SetSequence(updates, current_sequence);
      int my_batch_count = WriteBatchInternal::Count(updates);
      last_sequence += my_batch_count;
      // Record statistics
      RecordTick(options_.statistics, NUMBER_KEYS_WRITTEN, my_batch_count);
      RecordTick(options_.statistics,
                 BYTES_WRITTEN,
                 WriteBatchInternal::ByteSize(updates));
2820 2821
      if (options.disableWAL) {
        flush_on_destroy_ = true;
2822
      }
2823 2824
      BumpPerfTime(&perf_context.write_pre_and_post_process_time,
                   &pre_post_process_timer);
2825 2826

      if (!options.disableWAL) {
2827 2828
        StopWatchNano timer(env_);
        StartPerfTimer(&timer);
H
heyongqiang 已提交
2829 2830
        status = log_->AddRecord(WriteBatchInternal::Contents(updates));
        if (status.ok() && options.sync) {
2831
          if (options_.use_fsync) {
2832
            StopWatch(env_, options_.statistics, WAL_FILE_SYNC_MICROS);
2833
            status = log_->file()->Fsync();
2834
          } else {
2835
            StopWatch(env_, options_.statistics, WAL_FILE_SYNC_MICROS);
2836
            status = log_->file()->Sync();
2837
          }
H
heyongqiang 已提交
2838
        }
2839
        BumpPerfTime(&perf_context.write_wal_time, &timer);
2840 2841
      }
      if (status.ok()) {
2842 2843
        StopWatchNano write_memtable_timer(env_, false);
        StartPerfTimer(&write_memtable_timer);
2844 2845
        status = WriteBatchInternal::InsertInto(updates, mem_, &options_, this,
                                                options_.filter_deletes);
2846
        BumpPerfTime(&perf_context.write_memtable_time, &write_memtable_timer);
2847 2848 2849 2850 2851 2852 2853
        if (!status.ok()) {
          // Panic for in-memory corruptions
          // Note that existing logic was not sound. Any partial failure writing
          // into the memtable would result in a state that some write ops might
          // have succeeded in memtable but Status reports error for all writes.
          throw std::runtime_error("In memory WriteBatch corruption!");
        }
2854
        SetTickerCount(options_.statistics, SEQUENCE_NUMBER, last_sequence);
2855
      }
2856
      StartPerfTimer(&pre_post_process_timer);
I
Igor Canadi 已提交
2857
      LogFlush(options_.info_log);
2858 2859
      mutex_.Lock();
      if (status.ok()) {
2860
        versions_->SetLastSequence(last_sequence);
2861
      }
J
jorlow@chromium.org 已提交
2862
    }
2863
    if (updates == &tmp_batch_) tmp_batch_.Clear();
J
jorlow@chromium.org 已提交
2864
  }
I
Igor Canadi 已提交
2865 2866 2867
  if (options_.paranoid_checks && !status.ok() && bg_error_.ok()) {
    bg_error_ = status; // stop compaction & fail any further writes
  }
2868

2869 2870 2871 2872 2873 2874 2875
  while (true) {
    Writer* ready = writers_.front();
    writers_.pop_front();
    if (ready != &w) {
      ready->status = status;
      ready->done = true;
      ready->cv.Signal();
2876
    }
2877 2878
    if (ready == last_writer) break;
  }
2879

2880 2881 2882
  // Notify new head of write queue
  if (!writers_.empty()) {
    writers_.front()->cv.Signal();
2883
  }
2884 2885
  BumpPerfTime(&perf_context.write_pre_and_post_process_time,
               &pre_post_process_timer);
J
jorlow@chromium.org 已提交
2886 2887 2888
  return status;
}

2889
// REQUIRES: Writer list must be non-empty
2890
// REQUIRES: First writer must have a non-nullptr batch
2891 2892 2893 2894
WriteBatch* DBImpl::BuildBatchGroup(Writer** last_writer) {
  assert(!writers_.empty());
  Writer* first = writers_.front();
  WriteBatch* result = first->batch;
2895
  assert(result != nullptr);
2896 2897 2898 2899 2900 2901 2902 2903 2904 2905 2906 2907 2908 2909 2910 2911 2912 2913 2914 2915 2916

  size_t size = WriteBatchInternal::ByteSize(first->batch);

  // Allow the group to grow up to a maximum size, but if the
  // original write is small, limit the growth so we do not slow
  // down the small write too much.
  size_t max_size = 1 << 20;
  if (size <= (128<<10)) {
    max_size = size + (128<<10);
  }

  *last_writer = first;
  std::deque<Writer*>::iterator iter = writers_.begin();
  ++iter;  // Advance past "first"
  for (; iter != writers_.end(); ++iter) {
    Writer* w = *iter;
    if (w->sync && !first->sync) {
      // Do not include a sync write into a batch handled by a non-sync write.
      break;
    }

H
heyongqiang 已提交
2917 2918 2919 2920 2921 2922
    if (!w->disableWAL && first->disableWAL) {
      // Do not include a write that needs WAL into a batch that has
      // WAL disabled.
      break;
    }

2923
    if (w->batch != nullptr) {
2924 2925 2926 2927 2928 2929 2930 2931 2932
      size += WriteBatchInternal::ByteSize(w->batch);
      if (size > max_size) {
        // Do not make batch too big
        break;
      }

      // Append to *reuslt
      if (result == first->batch) {
        // Switch to temporary batch instead of disturbing caller's batch
2933
        result = &tmp_batch_;
2934 2935 2936 2937 2938 2939 2940 2941 2942 2943
        assert(WriteBatchInternal::Count(result) == 0);
        WriteBatchInternal::Append(result, first->batch);
      }
      WriteBatchInternal::Append(result, w->batch);
    }
    *last_writer = w;
  }
  return result;
}

2944 2945 2946
// This function computes the amount of time in microseconds by which a write
// should be delayed based on the number of level-0 files according to the
// following formula:
J
Jim Paton 已提交
2947 2948 2949 2950
// if n < bottom, return 0;
// if n >= top, return 1000;
// otherwise, let r = (n - bottom) /
//                    (top - bottom)
2951 2952 2953 2954
//  and return r^2 * 1000.
// The goal of this formula is to gradually increase the rate at which writes
// are slowed. We also tried linear delay (r * 1000), but it seemed to do
// slightly worse. There is no other particular reason for choosing quadratic.
J
Jim Paton 已提交
2955
uint64_t DBImpl::SlowdownAmount(int n, int top, int bottom) {
2956
  uint64_t delay;
J
Jim Paton 已提交
2957
  if (n >= top) {
2958 2959
    delay = 1000;
  }
J
Jim Paton 已提交
2960
  else if (n < bottom) {
2961 2962 2963 2964
    delay = 0;
  }
  else {
    // If we are here, we know that:
J
Jim Paton 已提交
2965
    //   level0_start_slowdown <= n < level0_slowdown
2966 2967
    // since the previous two conditions are false.
    float how_much =
J
Jim Paton 已提交
2968 2969
      (float) (n - bottom) /
              (top - bottom);
2970 2971 2972 2973 2974 2975
    delay = how_much * how_much * 1000;
  }
  assert(delay <= 1000);
  return delay;
}

2976
// REQUIRES: mutex_ is held
2977
// REQUIRES: this thread is currently at the front of the writer queue
2978 2979
Status DBImpl::MakeRoomForWrite(bool force) {
  mutex_.AssertHeld();
2980
  assert(!writers_.empty());
2981
  bool allow_delay = !force;
J
Jim Paton 已提交
2982 2983
  bool allow_hard_rate_limit_delay = !force;
  bool allow_soft_rate_limit_delay = !force;
2984
  uint64_t rate_limit_delay_millis = 0;
2985
  Status s;
2986
  double score;
2987

2988 2989 2990 2991 2992
  while (true) {
    if (!bg_error_.ok()) {
      // Yield previous error
      s = bg_error_;
      break;
2993 2994
    } else if (
        allow_delay &&
2995
        versions_->NumLevelFiles(0) >=
2996
          options_.level0_slowdown_writes_trigger) {
2997 2998 2999
      // We are getting close to hitting a hard limit on the number of
      // L0 files.  Rather than delaying a single write by several
      // seconds when we hit the hard limit, start delaying each
3000
      // individual write by 0-1ms to reduce latency variance.  Also,
3001 3002 3003
      // this delay hands over some CPU to the compaction thread in
      // case it is sharing the same core as the writer.
      mutex_.Unlock();
3004
      uint64_t delayed;
J
Jim Paton 已提交
3005 3006
      {
        StopWatch sw(env_, options_.statistics, STALL_L0_SLOWDOWN_COUNT);
J
Jim Paton 已提交
3007 3008 3009 3010 3011
        env_->SleepForMicroseconds(
          SlowdownAmount(versions_->NumLevelFiles(0),
                         options_.level0_slowdown_writes_trigger,
                         options_.level0_stop_writes_trigger)
        );
3012
        delayed = sw.ElapsedMicros();
J
Jim Paton 已提交
3013
      }
3014
      RecordTick(options_.statistics, STALL_L0_SLOWDOWN_MICROS, delayed);
3015
      stall_level0_slowdown_ += delayed;
J
Jim Paton 已提交
3016
      stall_level0_slowdown_count_++;
3017 3018
      allow_delay = false;  // Do not delay a single write more than once
      mutex_.Lock();
3019
      delayed_writes_++;
3020 3021 3022
    } else if (!force &&
               (mem_->ApproximateMemoryUsage() <= options_.write_buffer_size)) {
      // There is room in current memtable
3023 3024 3025
      if (allow_delay) {
        DelayLoggingAndReset();
      }
3026
      break;
3027
    } else if (imm_.size() == options_.max_write_buffer_number - 1) {
3028
      // We have filled up the current memtable, but the previous
3029 3030
      // ones are still being compacted, so we wait.
      DelayLoggingAndReset();
3031
      Log(options_.info_log, "wait for memtable compaction...\n");
3032
      uint64_t stall;
J
Jim Paton 已提交
3033 3034 3035 3036
      {
        StopWatch sw(env_, options_.statistics,
          STALL_MEMTABLE_COMPACTION_COUNT);
        bg_cv_.Wait();
3037
        stall = sw.ElapsedMicros();
J
Jim Paton 已提交
3038
      }
3039 3040
      RecordTick(options_.statistics, STALL_MEMTABLE_COMPACTION_MICROS, stall);
      stall_memtable_compaction_ += stall;
J
Jim Paton 已提交
3041
      stall_memtable_compaction_count_++;
3042
    } else if (versions_->NumLevelFiles(0) >=
3043
               options_.level0_stop_writes_trigger) {
3044
      // There are too many level-0 files.
3045 3046
      DelayLoggingAndReset();
      Log(options_.info_log, "wait for fewer level0 files...\n");
3047
      uint64_t stall;
J
Jim Paton 已提交
3048 3049 3050
      {
        StopWatch sw(env_, options_.statistics, STALL_L0_NUM_FILES_COUNT);
        bg_cv_.Wait();
3051
        stall = sw.ElapsedMicros();
J
Jim Paton 已提交
3052
      }
3053 3054
      RecordTick(options_.statistics, STALL_L0_NUM_FILES_MICROS, stall);
      stall_level0_num_files_ += stall;
J
Jim Paton 已提交
3055
      stall_level0_num_files_count_++;
3056
    } else if (
J
Jim Paton 已提交
3057 3058 3059
        allow_hard_rate_limit_delay &&
        options_.hard_rate_limit > 1.0 &&
        (score = versions_->MaxCompactionScore()) > options_.hard_rate_limit) {
3060
      // Delay a write when the compaction score for any level is too large.
3061
      int max_level = versions_->MaxCompactionScoreLevel();
3062
      mutex_.Unlock();
3063
      uint64_t delayed;
J
Jim Paton 已提交
3064
      {
J
Jim Paton 已提交
3065
        StopWatch sw(env_, options_.statistics, HARD_RATE_LIMIT_DELAY_COUNT);
J
Jim Paton 已提交
3066
        env_->SleepForMicroseconds(1000);
3067
        delayed = sw.ElapsedMicros();
J
Jim Paton 已提交
3068
      }
3069
      stall_leveln_slowdown_[max_level] += delayed;
J
Jim Paton 已提交
3070
      stall_leveln_slowdown_count_[max_level]++;
3071
      // Make sure the following value doesn't round to zero.
3072 3073 3074
      uint64_t rate_limit = std::max((delayed / 1000), (uint64_t) 1);
      rate_limit_delay_millis += rate_limit;
      RecordTick(options_.statistics, RATE_LIMIT_DELAY_MILLIS, rate_limit);
J
Jim Paton 已提交
3075 3076 3077 3078
      if (options_.rate_limit_delay_max_milliseconds > 0 &&
          rate_limit_delay_millis >=
          (unsigned)options_.rate_limit_delay_max_milliseconds) {
        allow_hard_rate_limit_delay = false;
3079
      }
3080
      mutex_.Lock();
J
Jim Paton 已提交
3081 3082 3083 3084 3085 3086 3087
    } else if (
        allow_soft_rate_limit_delay &&
        options_.soft_rate_limit > 0.0 &&
        (score = versions_->MaxCompactionScore()) > options_.soft_rate_limit) {
      // Delay a write when the compaction score for any level is too large.
      // TODO: add statistics
      mutex_.Unlock();
J
Jim Paton 已提交
3088 3089 3090 3091 3092 3093 3094 3095 3096
      {
        StopWatch sw(env_, options_.statistics, SOFT_RATE_LIMIT_DELAY_COUNT);
        env_->SleepForMicroseconds(SlowdownAmount(
          score,
          options_.soft_rate_limit,
          options_.hard_rate_limit)
        );
        rate_limit_delay_millis += sw.ElapsedMicros();
      }
J
Jim Paton 已提交
3097 3098
      allow_soft_rate_limit_delay = false;
      mutex_.Lock();
3099 3100
    } else {
      // Attempt to switch to a new memtable and trigger compaction of old
3101
      DelayLoggingAndReset();
3102 3103
      assert(versions_->PrevLogNumber() == 0);
      uint64_t new_log_number = versions_->NewFileNumber();
3104
      unique_ptr<WritableFile> lfile;
H
Haobo Xu 已提交
3105 3106
      EnvOptions soptions(storage_options_);
      soptions.use_mmap_writes = false;
3107
      s = env_->NewWritableFile(
3108
            LogFileName(options_.wal_dir, new_log_number),
3109 3110 3111
            &lfile,
            soptions
          );
3112
      if (!s.ok()) {
H
heyongqiang 已提交
3113
        // Avoid chewing through file number space in a tight loop.
3114
        versions_->ReuseFileNumber(new_log_number);
3115 3116
        break;
      }
3117 3118 3119
      // Our final size should be less than write_buffer_size
      // (compression, etc) but err on the side of caution.
      lfile->SetPreallocationBlockSize(1.1 * options_.write_buffer_size);
3120
      logfile_number_ = new_log_number;
3121
      log_.reset(new log::Writer(std::move(lfile)));
3122
      mem_->SetNextLogNumber(logfile_number_);
3123
      imm_.Add(mem_);
3124 3125 3126
      if (force) {
        imm_.FlushRequested();
      }
3127 3128
      mem_ = new MemTable(
          internal_comparator_, mem_rep_factory_, NumberLevels(), options_);
3129
      mem_->Ref();
3130
      Log(options_.info_log,
K
Kai Liu 已提交
3131 3132
          "New memtable created with log file: #%lu\n",
          (unsigned long)logfile_number_);
3133
      mem_->SetLogNumber(logfile_number_);
3134
      force = false;   // Do not force another compaction if have room
3135
      MaybeScheduleFlushOrCompaction();
3136 3137 3138 3139 3140 3141 3142 3143
    }
  }
  return s;
}

bool DBImpl::GetProperty(const Slice& property, std::string* value) {
  value->clear();

J
jorlow@chromium.org 已提交
3144 3145
  MutexLock l(&mutex_);
  Slice in = property;
3146
  Slice prefix("rocksdb.");
J
jorlow@chromium.org 已提交
3147 3148 3149 3150 3151 3152 3153
  if (!in.starts_with(prefix)) return false;
  in.remove_prefix(prefix.size());

  if (in.starts_with("num-files-at-level")) {
    in.remove_prefix(strlen("num-files-at-level"));
    uint64_t level;
    bool ok = ConsumeDecimalNumber(&in, &level) && in.empty();
3154
    if (!ok || (int)level >= NumberLevels()) {
J
jorlow@chromium.org 已提交
3155 3156
      return false;
    } else {
3157
      char buf[100];
D
dgrogan@chromium.org 已提交
3158 3159
      snprintf(buf, sizeof(buf), "%d",
               versions_->NumLevelFiles(static_cast<int>(level)));
3160
      *value = buf;
J
jorlow@chromium.org 已提交
3161 3162
      return true;
    }
3163 3164 3165 3166 3167 3168 3169 3170 3171 3172 3173 3174 3175 3176 3177 3178 3179
  } else if (in == "levelstats") {
    char buf[1000];
    snprintf(buf, sizeof(buf),
             "Level Files Size(MB)\n"
             "--------------------\n");
    value->append(buf);

    for (int level = 0; level < NumberLevels(); level++) {
      snprintf(buf, sizeof(buf),
               "%3d %8d %8.0f\n",
               level,
               versions_->NumLevelFiles(level),
               versions_->NumLevelBytes(level) / 1048576.0);
      value->append(buf);
    }
    return true;

3180
  } else if (in == "stats") {
M
Mark Callaghan 已提交
3181
    char buf[1000];
3182 3183
    uint64_t total_bytes_written = 0;
    uint64_t total_bytes_read = 0;
M
Mark Callaghan 已提交
3184
    uint64_t micros_up = env_->NowMicros() - started_at_;
3185 3186
    // Add "+1" to make sure seconds_up is > 0 and avoid NaN later
    double seconds_up = (micros_up + 1) / 1000000.0;
3187
    uint64_t total_slowdown = 0;
J
Jim Paton 已提交
3188
    uint64_t total_slowdown_count = 0;
3189 3190 3191 3192
    uint64_t interval_bytes_written = 0;
    uint64_t interval_bytes_read = 0;
    uint64_t interval_bytes_new = 0;
    double   interval_seconds_up = 0;
M
Mark Callaghan 已提交
3193 3194

    // Pardon the long line but I think it is easier to read this way.
3195 3196
    snprintf(buf, sizeof(buf),
             "                               Compactions\n"
3197
             "Level  Files Size(MB) Score Time(sec)  Read(MB) Write(MB)    Rn(MB)  Rnp1(MB)  Wnew(MB) RW-Amplify Read(MB/s) Write(MB/s)      Rn     Rnp1     Wnp1     NewW    Count  Ln-stall Stall-cnt\n"
J
Jim Paton 已提交
3198
             "--------------------------------------------------------------------------------------------------------------------------------------------------------------------------------------\n"
3199 3200
             );
    value->append(buf);
3201
    for (int level = 0; level < NumberLevels(); level++) {
3202 3203
      int files = versions_->NumLevelFiles(level);
      if (stats_[level].micros > 0 || files > 0) {
M
Mark Callaghan 已提交
3204 3205 3206 3207 3208 3209
        int64_t bytes_read = stats_[level].bytes_readn +
                             stats_[level].bytes_readnp1;
        int64_t bytes_new = stats_[level].bytes_written -
                            stats_[level].bytes_readnp1;
        double amplify = (stats_[level].bytes_readn == 0)
            ? 0.0
3210 3211 3212
            : (stats_[level].bytes_written +
               stats_[level].bytes_readnp1 +
               stats_[level].bytes_readn) /
M
Mark Callaghan 已提交
3213 3214
                (double) stats_[level].bytes_readn;

3215 3216 3217
        total_bytes_read += bytes_read;
        total_bytes_written += stats_[level].bytes_written;

3218 3219
        snprintf(
            buf, sizeof(buf),
3220
            "%3d %8d %8.0f %5.1f %9.0f %9.0f %9.0f %9.0f %9.0f %9.0f %10.1f %9.1f %11.1f %8d %8d %8d %8d %8d %9.1f %9lu\n",
3221 3222 3223
            level,
            files,
            versions_->NumLevelBytes(level) / 1048576.0,
3224
            versions_->NumLevelBytes(level) /
3225
                versions_->MaxBytesForLevel(level),
3226
            stats_[level].micros / 1e6,
M
Mark Callaghan 已提交
3227 3228 3229 3230 3231 3232
            bytes_read / 1048576.0,
            stats_[level].bytes_written / 1048576.0,
            stats_[level].bytes_readn / 1048576.0,
            stats_[level].bytes_readnp1 / 1048576.0,
            bytes_new / 1048576.0,
            amplify,
3233 3234
            // +1 to avoid division by 0
            (bytes_read / 1048576.0) / ((stats_[level].micros+1) / 1000000.0),
3235
            (stats_[level].bytes_written / 1048576.0) /
3236
                ((stats_[level].micros+1) / 1000000.0),
M
Mark Callaghan 已提交
3237 3238 3239 3240
            stats_[level].files_in_leveln,
            stats_[level].files_in_levelnp1,
            stats_[level].files_out_levelnp1,
            stats_[level].files_out_levelnp1 - stats_[level].files_in_levelnp1,
3241
            stats_[level].count,
J
Jim Paton 已提交
3242 3243
            stall_leveln_slowdown_[level] / 1000000.0,
            (unsigned long) stall_leveln_slowdown_count_[level]);
3244
        total_slowdown += stall_leveln_slowdown_[level];
J
Jim Paton 已提交
3245
        total_slowdown_count += stall_leveln_slowdown_count_[level];
3246 3247 3248
        value->append(buf);
      }
    }
M
Mark Callaghan 已提交
3249

3250 3251 3252 3253 3254 3255 3256 3257 3258
    interval_bytes_new = stats_[0].bytes_written - last_stats_.bytes_new_;
    interval_bytes_read = total_bytes_read - last_stats_.bytes_read_;
    interval_bytes_written = total_bytes_written - last_stats_.bytes_written_;
    interval_seconds_up = seconds_up - last_stats_.seconds_up_;

    snprintf(buf, sizeof(buf), "Uptime(secs): %.1f total, %.1f interval\n",
             seconds_up, interval_seconds_up);
    value->append(buf);

M
Mark Callaghan 已提交
3259
    snprintf(buf, sizeof(buf),
3260 3261
             "Compaction IO cumulative (GB): "
             "%.2f new, %.2f read, %.2f write, %.2f read+write\n",
M
Mark Callaghan 已提交
3262
             stats_[0].bytes_written / (1048576.0 * 1024),
3263 3264 3265 3266 3267 3268 3269 3270
             total_bytes_read / (1048576.0 * 1024),
             total_bytes_written / (1048576.0 * 1024),
             (total_bytes_read + total_bytes_written) / (1048576.0 * 1024));
    value->append(buf);

    snprintf(buf, sizeof(buf),
             "Compaction IO cumulative (MB/sec): "
             "%.1f new, %.1f read, %.1f write, %.1f read+write\n",
M
Mark Callaghan 已提交
3271
             stats_[0].bytes_written / 1048576.0 / seconds_up,
3272 3273 3274 3275 3276 3277 3278 3279 3280 3281 3282
             total_bytes_read / 1048576.0 / seconds_up,
             total_bytes_written / 1048576.0 / seconds_up,
             (total_bytes_read + total_bytes_written) / 1048576.0 / seconds_up);
    value->append(buf);

    // +1 to avoid divide by 0 and NaN
    snprintf(buf, sizeof(buf),
             "Amplification cumulative: %.1f write, %.1f compaction\n",
             (double) total_bytes_written / (stats_[0].bytes_written+1),
             (double) (total_bytes_written + total_bytes_read)
                  / (stats_[0].bytes_written+1));
M
Mark Callaghan 已提交
3283 3284
    value->append(buf);

3285 3286 3287 3288 3289 3290 3291 3292 3293 3294 3295 3296 3297 3298 3299 3300 3301 3302 3303 3304 3305 3306 3307 3308 3309
    snprintf(buf, sizeof(buf),
             "Compaction IO interval (MB): "
             "%.2f new, %.2f read, %.2f write, %.2f read+write\n",
             interval_bytes_new / 1048576.0,
             interval_bytes_read/ 1048576.0,
             interval_bytes_written / 1048576.0,
             (interval_bytes_read + interval_bytes_written) / 1048576.0);
    value->append(buf);

    snprintf(buf, sizeof(buf),
             "Compaction IO interval (MB/sec): "
             "%.1f new, %.1f read, %.1f write, %.1f read+write\n",
             interval_bytes_new / 1048576.0 / interval_seconds_up,
             interval_bytes_read / 1048576.0 / interval_seconds_up,
             interval_bytes_written / 1048576.0 / interval_seconds_up,
             (interval_bytes_read + interval_bytes_written)
                 / 1048576.0 / interval_seconds_up);
    value->append(buf);

    // +1 to avoid divide by 0 and NaN
    snprintf(buf, sizeof(buf),
             "Amplification interval: %.1f write, %.1f compaction\n",
             (double) interval_bytes_written / (interval_bytes_new+1),
             (double) (interval_bytes_written + interval_bytes_read) /
                  (interval_bytes_new+1));
M
Mark Callaghan 已提交
3310 3311 3312 3313
    value->append(buf);

    snprintf(buf, sizeof(buf),
            "Stalls(secs): %.3f level0_slowdown, %.3f level0_numfiles, "
3314
            "%.3f memtable_compaction, %.3f leveln_slowdown\n",
M
Mark Callaghan 已提交
3315 3316
            stall_level0_slowdown_ / 1000000.0,
            stall_level0_num_files_ / 1000000.0,
3317
            stall_memtable_compaction_ / 1000000.0,
3318
            total_slowdown / 1000000.0);
M
Mark Callaghan 已提交
3319 3320
    value->append(buf);

J
Jim Paton 已提交
3321 3322 3323 3324 3325 3326 3327 3328 3329
    snprintf(buf, sizeof(buf),
            "Stalls(count): %lu level0_slowdown, %lu level0_numfiles, "
            "%lu memtable_compaction, %lu leveln_slowdown\n",
            (unsigned long) stall_level0_slowdown_count_,
            (unsigned long) stall_level0_num_files_count_,
            (unsigned long) stall_memtable_compaction_count_,
            (unsigned long) total_slowdown_count);
    value->append(buf);

3330 3331 3332 3333 3334
    last_stats_.bytes_read_ = total_bytes_read;
    last_stats_.bytes_written_ = total_bytes_written;
    last_stats_.bytes_new_ = stats_[0].bytes_written;
    last_stats_.seconds_up_ = seconds_up;

3335
    return true;
G
Gabor Cselle 已提交
3336 3337 3338
  } else if (in == "sstables") {
    *value = versions_->current()->DebugString();
    return true;
3339 3340 3341
  } else if (in == "num-immutable-mem-table") {
    *value = std::to_string(imm_.size());
    return true;
J
jorlow@chromium.org 已提交
3342
  }
3343

J
jorlow@chromium.org 已提交
3344 3345 3346 3347 3348 3349 3350 3351 3352 3353 3354 3355 3356 3357 3358 3359 3360 3361 3362 3363 3364 3365 3366 3367 3368 3369 3370 3371 3372
  return false;
}

void DBImpl::GetApproximateSizes(
    const Range* range, int n,
    uint64_t* sizes) {
  // TODO(opt): better implementation
  Version* v;
  {
    MutexLock l(&mutex_);
    versions_->current()->Ref();
    v = versions_->current();
  }

  for (int i = 0; i < n; i++) {
    // Convert user_key into a corresponding internal key.
    InternalKey k1(range[i].start, kMaxSequenceNumber, kValueTypeForSeek);
    InternalKey k2(range[i].limit, kMaxSequenceNumber, kValueTypeForSeek);
    uint64_t start = versions_->ApproximateOffsetOf(v, k1);
    uint64_t limit = versions_->ApproximateOffsetOf(v, k2);
    sizes[i] = (limit >= start ? limit - start : 0);
  }

  {
    MutexLock l(&mutex_);
    v->Unref();
  }
}

3373 3374 3375 3376 3377 3378 3379
inline void DBImpl::DelayLoggingAndReset() {
  if (delayed_writes_ > 0) {
    Log(options_.info_log, "delayed %d write...\n", delayed_writes_ );
    delayed_writes_ = 0;
  }
}

3380 3381 3382
Status DBImpl::DeleteFile(std::string name) {
  uint64_t number;
  FileType type;
3383 3384 3385 3386
  WalFileType log_type;
  if (!ParseFileName(name, &number, &type, &log_type) ||
      (type != kTableFile && type != kLogFile)) {
    Log(options_.info_log, "DeleteFile %s failed.\n", name.c_str());
3387 3388 3389
    return Status::InvalidArgument("Invalid file name");
  }

3390 3391 3392 3393 3394 3395 3396 3397 3398 3399 3400 3401 3402 3403
  Status status;
  if (type == kLogFile) {
    // Only allow deleting archived log files
    if (log_type != kArchivedLogFile) {
      Log(options_.info_log, "DeleteFile %s failed.\n", name.c_str());
      return Status::NotSupported("Delete only supported for archived logs");
    }
    status = env_->DeleteFile(options_.wal_dir + "/" + name.c_str());
    if (!status.ok()) {
      Log(options_.info_log, "DeleteFile %s failed.\n", name.c_str());
    }
    return status;
  }

3404 3405 3406 3407
  int level;
  FileMetaData metadata;
  int maxlevel = NumberLevels();
  VersionEdit edit(maxlevel);
D
Dhruba Borthakur 已提交
3408 3409 3410 3411 3412
  DeletionState deletion_state;
  {
    MutexLock l(&mutex_);
    status = versions_->GetMetadataForFile(number, &level, &metadata);
    if (!status.ok()) {
3413 3414
      Log(options_.info_log, "DeleteFile %s failed. File not found\n",
                             name.c_str());
D
Dhruba Borthakur 已提交
3415 3416 3417
      return Status::InvalidArgument("File not found");
    }
    assert((level > 0) && (level < maxlevel));
3418

D
Dhruba Borthakur 已提交
3419 3420
    // If the file is being compacted no need to delete.
    if (metadata.being_compacted) {
3421
      Log(options_.info_log,
3422
          "DeleteFile %s Skipped. File about to be compacted\n", name.c_str());
D
Dhruba Borthakur 已提交
3423
      return Status::OK();
3424 3425
    }

D
Dhruba Borthakur 已提交
3426 3427 3428 3429 3430 3431
    // 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.
    for (int i = level + 1; i < maxlevel; i++) {
      if (versions_->NumLevelFiles(i) != 0) {
        Log(options_.info_log,
3432
            "DeleteFile %s FAILED. File not in last level\n", name.c_str());
D
Dhruba Borthakur 已提交
3433 3434 3435 3436 3437
        return Status::InvalidArgument("File not in last level");
      }
    }
    edit.DeleteFile(level, number);
    status = versions_->LogAndApply(&edit, &mutex_);
I
Igor Canadi 已提交
3438
    FindObsoleteFiles(deletion_state, false);
D
Dhruba Borthakur 已提交
3439
  } // lock released here
I
Igor Canadi 已提交
3440
  LogFlush(options_.info_log);
D
Dhruba Borthakur 已提交
3441

3442
  if (status.ok()) {
D
Dhruba Borthakur 已提交
3443 3444
    // remove files outside the db-lock
    PurgeObsoleteFiles(deletion_state);
3445 3446 3447 3448
  }
  return status;
}

3449
void DBImpl::GetLiveFilesMetaData(std::vector<LiveFileMetaData> *metadata) {
3450 3451 3452 3453
  MutexLock l(&mutex_);
  return versions_->GetLiveFilesMetaData(metadata);
}

J
jorlow@chromium.org 已提交
3454 3455 3456 3457 3458 3459 3460 3461 3462 3463 3464 3465 3466 3467
// Default implementations of convenience methods that subclasses of DB
// can call if they wish
Status DB::Put(const WriteOptions& opt, const Slice& key, const Slice& value) {
  WriteBatch batch;
  batch.Put(key, value);
  return Write(opt, &batch);
}

Status DB::Delete(const WriteOptions& opt, const Slice& key) {
  WriteBatch batch;
  batch.Delete(key);
  return Write(opt, &batch);
}

3468 3469 3470 3471 3472 3473 3474
Status DB::Merge(const WriteOptions& opt, const Slice& key,
                 const Slice& value) {
  WriteBatch batch;
  batch.Merge(key, value);
  return Write(opt, &batch);
}

J
jorlow@chromium.org 已提交
3475 3476
DB::~DB() { }

J
Jim Paton 已提交
3477
Status DB::Open(const Options& options, const std::string& dbname, DB** dbptr) {
3478
  *dbptr = nullptr;
H
Haobo Xu 已提交
3479
  EnvOptions soptions;
J
jorlow@chromium.org 已提交
3480

3481
  if (options.block_cache != nullptr && options.no_block_cache) {
3482
    return Status::InvalidArgument(
3483
        "no_block_cache is true while block_cache is not nullptr");
3484
  }
3485

J
jorlow@chromium.org 已提交
3486
  DBImpl* impl = new DBImpl(options, dbname);
3487 3488 3489 3490 3491 3492 3493
  Status s = impl->env_->CreateDirIfMissing(impl->options_.wal_dir);
  if (!s.ok()) {
    delete impl;
    return s;
  }

  s = impl->CreateArchivalDirectory();
3494 3495 3496 3497
  if (!s.ok()) {
    delete impl;
    return s;
  }
J
jorlow@chromium.org 已提交
3498
  impl->mutex_.Lock();
3499
  VersionEdit edit(impl->NumberLevels());
3500
  s = impl->Recover(&edit); // Handles create_if_missing, error_if_exists
J
jorlow@chromium.org 已提交
3501
  if (s.ok()) {
3502
    uint64_t new_log_number = impl->versions_->NewFileNumber();
3503
    unique_ptr<WritableFile> lfile;
H
Haobo Xu 已提交
3504
    soptions.use_mmap_writes = false;
3505 3506 3507 3508 3509
    s = options.env->NewWritableFile(
      LogFileName(impl->options_.wal_dir, new_log_number),
      &lfile,
      soptions
    );
J
jorlow@chromium.org 已提交
3510
    if (s.ok()) {
3511
      lfile->SetPreallocationBlockSize(1.1 * options.write_buffer_size);
3512
      edit.SetLogNumber(new_log_number);
3513
      impl->logfile_number_ = new_log_number;
3514
      impl->log_.reset(new log::Writer(std::move(lfile)));
3515
      s = impl->versions_->LogAndApply(&edit, &impl->mutex_);
J
jorlow@chromium.org 已提交
3516 3517
    }
    if (s.ok()) {
3518
      impl->mem_->SetLogNumber(impl->logfile_number_);
J
jorlow@chromium.org 已提交
3519
      impl->DeleteObsoleteFiles();
3520
      impl->MaybeScheduleFlushOrCompaction();
3521
      impl->MaybeScheduleLogDBDeployStats();
J
jorlow@chromium.org 已提交
3522 3523 3524
    }
  }
  impl->mutex_.Unlock();
3525 3526 3527 3528 3529 3530 3531 3532 3533 3534 3535 3536 3537

  if (options.compaction_style == kCompactionStyleUniversal) {
    int num_files;
    for (int i = 1; i < impl->NumberLevels(); i++) {
      num_files = impl->versions_->NumLevelFiles(i);
      if (num_files > 0) {
        s = Status::InvalidArgument("Not all files are at level 0. Cannot "
          "open with universal compaction style.");
        break;
      }
    }
  }

J
jorlow@chromium.org 已提交
3538 3539 3540 3541 3542 3543 3544 3545
  if (s.ok()) {
    *dbptr = impl;
  } else {
    delete impl;
  }
  return s;
}

3546 3547 3548
Snapshot::~Snapshot() {
}

J
jorlow@chromium.org 已提交
3549
Status DestroyDB(const std::string& dbname, const Options& options) {
3550 3551 3552 3553 3554
  const InternalKeyComparator comparator(options.comparator);
  const InternalFilterPolicy filter_policy(options.filter_policy);
  const Options& soptions(SanitizeOptions(
    dbname, &comparator, &filter_policy, options));
  Env* env = soptions.env;
J
jorlow@chromium.org 已提交
3555
  std::vector<std::string> filenames;
3556 3557
  std::vector<std::string> archiveFiles;

3558
  std::string archivedir = ArchivalDirectory(dbname);
J
jorlow@chromium.org 已提交
3559 3560
  // Ignore error in case directory does not exist
  env->GetChildren(dbname, &filenames);
3561 3562 3563 3564 3565 3566 3567

  if (dbname != soptions.wal_dir) {
    std::vector<std::string> logfilenames;
    env->GetChildren(soptions.wal_dir, &logfilenames);
    filenames.insert(filenames.end(), logfilenames.begin(), logfilenames.end());
    archivedir = ArchivalDirectory(soptions.wal_dir);
  }
3568

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3569 3570 3571 3572 3573
  if (filenames.empty()) {
    return Status::OK();
  }

  FileLock* lock;
3574 3575
  const std::string lockname = LockFileName(dbname);
  Status result = env->LockFile(lockname, &lock);
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  if (result.ok()) {
    uint64_t number;
    FileType type;
D
dgrogan@chromium.org 已提交
3579
    for (size_t i = 0; i < filenames.size(); i++) {
3580
      if (ParseFileName(filenames[i], &number, &type) &&
3581
          type != kDBLockFile) {  // Lock file will be deleted at end
K
Kosie van der Merwe 已提交
3582 3583 3584
        Status del;
        if (type == kMetaDatabase) {
          del = DestroyDB(dbname + "/" + filenames[i], options);
3585 3586
        } else if (type == kLogFile) {
          del = env->DeleteFile(soptions.wal_dir + "/" + filenames[i]);
K
Kosie van der Merwe 已提交
3587 3588 3589
        } else {
          del = env->DeleteFile(dbname + "/" + filenames[i]);
        }
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        if (result.ok() && !del.ok()) {
          result = del;
        }
      }
    }
3595

3596
    env->GetChildren(archivedir, &archiveFiles);
3597 3598
    // Delete archival files.
    for (size_t i = 0; i < archiveFiles.size(); ++i) {
3599 3600
      if (ParseFileName(archiveFiles[i], &number, &type) &&
          type == kLogFile) {
3601
        Status del = env->DeleteFile(archivedir + "/" + archiveFiles[i]);
3602 3603 3604 3605 3606
        if (result.ok() && !del.ok()) {
          result = del;
        }
      }
    }
3607
    // ignore case where no archival directory is present.
3608
    env->DeleteDir(archivedir);
3609

J
jorlow@chromium.org 已提交
3610
    env->UnlockFile(lock);  // Ignore error since state is already gone
3611
    env->DeleteFile(lockname);
J
jorlow@chromium.org 已提交
3612
    env->DeleteDir(dbname);  // Ignore error in case dir contains other files
3613
    env->DeleteDir(soptions.wal_dir);
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jorlow@chromium.org 已提交
3614 3615 3616 3617
  }
  return result;
}

3618 3619
//
// A global method that can dump out the build version
3620
void dumpLeveldbBuildVersion(Logger * log) {
3621
  Log(log, "Git sha %s", rocksdb_build_git_sha);
3622
  Log(log, "Compile time %s %s",
3623
      rocksdb_build_compile_time, rocksdb_build_compile_date);
3624 3625
}

3626
}  // namespace rocksdb