db_impl.cc 81.5 KB
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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>
#include <string>
#include <stdint.h>
#include <vector>
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#include <unordered_set>
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#include "db/builder.h"
#include "db/db_iter.h"
#include "db/dbformat.h"
#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/table_cache.h"
#include "db/version_set.h"
#include "db/write_batch_internal.h"
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#include "db/transaction_log_iterator_impl.h"
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#include "leveldb/db.h"
#include "leveldb/env.h"
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#include "leveldb/statistics.h"
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#include "leveldb/status.h"
#include "leveldb/table_builder.h"
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#include "port/port.h"
#include "table/block.h"
#include "table/merger.h"
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#include "table/table.h"
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#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/stop_watch.h"
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namespace leveldb {

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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;
  };
  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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struct DBImpl::DeletionState {

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  // the list of all live files that cannot be deleted
  std::vector<uint64_t> live;
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  // a list of all siles that exists in the db directory
  std::vector<std::string> allfiles;

  // the current filenumber, lognumber and prevlognumber
  // that corresponds to the set of files in 'live'.
  uint64_t filenumber, lognumber, prevlognumber;

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  // the list of all files to be evicted from the table cache
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  std::vector<uint64_t> files_to_evict;
};

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// Fix user-supplied options to be reasonable
template <class T,class V>
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,         64<<10, 1<<30);
  ClipToRange(&result.block_size,                1<<10,  4<<20);
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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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  return result;
}

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),
      shutting_down_(nullptr),
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      bg_cv_(&mutex_),
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      mem_(new MemTable(internal_comparator_, NumberLevels())),
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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_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_(0),
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      stall_level0_slowdown_(0),
      stall_memtable_compaction_(0),
      stall_level0_num_files_(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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      last_flushed_sequence_(0),
      storage_options_(options) {
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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);
  for (int i = 0; i < options.num_levels; ++i)
    stall_leveln_slowdown_[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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#ifdef USE_SCRIBE
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  logger_.reset(new ScribeLogger("localhost", 1456));
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#endif

  char name[100];
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  Status st = env_->GetHostName(name, 100L);
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  if(st.ok()) {
    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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}

DBImpl::~DBImpl() {
  // Wait for background work to finish
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  if (flush_on_destroy_) {
    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_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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}

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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();
  while (bg_compaction_scheduled_ || bg_logstats_scheduled_) {
    bg_cv_.Wait();
  }

  // Prevent new compactions from occuring.
  const int LargeNumber = 10000000;
  bg_compaction_scheduled_ += LargeNumber;
  mutex_.Unlock();

  // 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() {
  if (options_.WAL_ttl_seconds > 0) {
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    std::string archivalPath = ArchivalDirectory(dbname_);
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    return env_->CreateDirIfMissing(archivalPath);
  }
  return Status::OK();
}

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// Returns the list of live files in 'live' and the list
// of all files in the filesystem in 'allfiles'.
void DBImpl::FindObsoleteFiles(DeletionState& deletion_state) {
  mutex_.AssertHeld();

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

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  // This method is costly when the number of files is large.
  // Do not allow it to trigger more often than once in
  // delete_obsolete_files_period_micros.
  if (options_.delete_obsolete_files_period_micros != 0) {
    const uint64_t now_micros = env_->NowMicros();
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    if (delete_obsolete_files_last_run_ +
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        options_.delete_obsolete_files_period_micros > now_micros) {
      return;
    }
    delete_obsolete_files_last_run_ = now_micros;
  }

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  // Make a list of all of the live files; set is slow, should not
  // be used.
  deletion_state.live.assign(pending_outputs_.begin(),
                             pending_outputs_.end());
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  versions_->AddLiveFiles(&deletion_state.live);

  // set of all files in the directory
  env_->GetChildren(dbname_, &deletion_state.allfiles); // Ignore errors
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  // store the current filenum, lognum, etc
  deletion_state.filenumber = versions_->ManifestFileNumber();
  deletion_state.lognumber = versions_->LogNumber();
  deletion_state.prevlognumber = versions_->PrevLogNumber();
}

// Diffs the files listed in filenames and those that do not
// belong to live files are posibly removed. If the removed file
// is a sst file, then it returns the file number in files_to_evict.
// It is not necesary to hold the mutex when invoking this method.
void DBImpl::PurgeObsoleteFiles(DeletionState& state) {
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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.
  std::unordered_set<uint64_t> live_set(state.live.begin(),
                                        state.live.end());

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  for (size_t i = 0; i < state.allfiles.size(); i++) {
    if (ParseFileName(state.allfiles[i], &number, &type)) {
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      bool keep = true;
      switch (type) {
        case kLogFile:
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          keep = ((number >= state.lognumber) ||
                  (number == state.prevlognumber));
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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.filenumber);
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          break;
        case kTableFile:
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          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"
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          keep = (live_set.find(number) != live_set.end());
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          break;
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        case kInfoLogFile:
          keep = true;
          if (number != 0) {
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            old_log_files.push_back(state.allfiles[i]);
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          }
          break;
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        case kCurrentFile:
        case kDBLockFile:
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        case kMetaDatabase:
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          keep = true;
          break;
      }

      if (!keep) {
        if (type == kTableFile) {
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          // record the files to be evicted from the cache
          state.files_to_evict.push_back(number);
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        }
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        Log(options_.info_log, "Delete type=%d #%lld\n",
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            int(type),
            static_cast<unsigned long long>(number));
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        if (type == kLogFile && options_.WAL_ttl_seconds > 0) {
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          Status st = env_->RenameFile(LogFileName(dbname_, number),
                                       ArchivedLogFileName(dbname_, number));
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          if (!st.ok()) {
            Log(options_.info_log, "RenameFile type=%d #%lld FAILED\n",
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              int(type),
              static_cast<unsigned long long>(number));
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          }
        } else {
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          Status st = env_->DeleteFile(dbname_ + "/" + state.allfiles[i]);
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          if(!st.ok()) {
            Log(options_.info_log, "Delete type=%d #%lld FAILED\n",
                int(type),
                static_cast<unsigned long long>(number));
          }
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        }
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      }
    }
  }
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  // Delete old 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;
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    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);
    }
  }
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}

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void DBImpl::EvictObsoleteFiles(DeletionState& state) {
  for (unsigned int i = 0; i < state.files_to_evict.size(); i++) {
    table_cache_->Evict(state.files_to_evict[i]);
  }
}

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

void DBImpl::PurgeObsoleteWALFiles() {
  if (options_.WAL_ttl_seconds != ULONG_MAX && options_.WAL_ttl_seconds > 0) {
    std::vector<std::string> WALFiles;
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    std::string archivalDir = ArchivalDirectory(dbname_);
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    env_->GetChildren(archivalDir, &WALFiles);
    int64_t currentTime;
    const Status status = env_->GetCurrentTime(&currentTime);
    assert(status.ok());
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    for (const auto& f : WALFiles) {
      uint64_t fileMTime;
      const std::string filePath = archivalDir + "/" + f;
      const Status s = env_->GetFileModificationTime(filePath, &fileMTime);
      if (s.ok()) {
        if (status.ok() &&
            (currentTime - fileMTime > options_.WAL_ttl_seconds)) {
          Status delStatus = env_->DeleteFile(filePath);
          if (!delStatus.ok()) {
            Log(options_.info_log,
                "Failed Deleting a WAL file Error : i%s",
                delStatus.ToString().c_str());
          }
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        }
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      } // Ignore errors.
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    }
  }
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}

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// 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();

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  assert(db_lock_ == nullptr);
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  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_);
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    if (!s.ok()) {
      return s;
    }
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    if (!env_->FileExists(CurrentFileName(dbname_))) {
      if (options_.create_if_missing) {
        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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  Status s = versions_->Recover();
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  if (s.ok()) {
    SequenceNumber max_sequence(0);
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    // 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
    // produced by an older version of leveldb.
    const uint64_t min_log = versions_->LogNumber();
    const uint64_t prev_log = versions_->PrevLogNumber();
    std::vector<std::string> filenames;
    s = env_->GetChildren(dbname_, &filenames);
    if (!s.ok()) {
      return s;
533
    }
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    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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    }
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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");
    }

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    // 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++) {
554
      s = RecoverLogFile(logs[i], edit, &max_sequence, external_table);
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      // 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]);
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    }

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    if (s.ok()) {
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      if (versions_->LastSequence() < max_sequence) {
        versions_->SetLastSequence(max_sequence);
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        last_flushed_sequence_ = max_sequence;
      } else {
        last_flushed_sequence_ = versions_->LastSequence();
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      }
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    }
  }

  return s;
}

Status DBImpl::RecoverLogFile(uint64_t log_number,
                              VersionEdit* edit,
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                              SequenceNumber* max_sequence,
                              MemTable* external_table) {
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  struct LogReporter : public log::Reader::Reporter {
    Env* env;
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    Logger* info_log;
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    const char* fname;
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    Status* status;  // nullptr if options_.paranoid_checks==false
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    virtual void Corruption(size_t bytes, const Status& s) {
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      Log(info_log, "%s%s: dropping %d bytes; %s",
585
          (this->status == nullptr ? "(ignoring error) " : ""),
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          fname, static_cast<int>(bytes), s.ToString().c_str());
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      if (this->status != nullptr && this->status->ok()) *this->status = s;
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    }
  };

  mutex_.AssertHeld();

  // Open the log file
  std::string fname = LogFileName(dbname_, log_number);
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  unique_ptr<SequentialFile> file;
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  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_;
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  reporter.info_log = options_.info_log.get();
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  reporter.fname = fname.c_str();
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  reporter.status = (options_.paranoid_checks ? &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).
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  log::Reader reader(std::move(file), &reporter, true/*checksum*/,
613
                     0/*initial_offset*/);
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  Log(options_.info_log, "Recovering log #%llu",
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      (unsigned long long) log_number);

  // Read all the records and add to a memtable
  std::string scratch;
  Slice record;
  WriteBatch batch;
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  MemTable* mem = nullptr;
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  if (external_table) {
    mem = external_table;
  }
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  while (reader.ReadRecord(&record, &scratch) &&
         status.ok()) {
    if (record.size() < 12) {
      reporter.Corruption(
          record.size(), Status::Corruption("log record too small"));
      continue;
    }
    WriteBatchInternal::SetContents(&batch, record);

634
    if (mem == nullptr) {
635
      mem = new MemTable(internal_comparator_, NumberLevels());
636
      mem->Ref();
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    }
    status = WriteBatchInternal::InsertInto(&batch, mem);
    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;
    }

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    if (!external_table &&
        mem->ApproximateMemoryUsage() > options_.write_buffer_size) {
652
      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;
      }
658
      mem->Unref();
659
      mem = nullptr;
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    }
  }

663
  if (status.ok() && mem != nullptr && !external_table) {
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    status = WriteLevel0TableForRecovery(mem, edit);
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    // Reflect errors immediately so that conditions like full
    // file-systems cause the DB::Open() to fail.
  }

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

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Status DBImpl::WriteLevel0TableForRecovery(MemTable* mem, VersionEdit* edit) {
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  mutex_.AssertHeld();
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  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 #%llu: started",
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      (unsigned long long) meta.number);
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  Status s;
  {
    mutex_.Unlock();
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    s = BuildTable(dbname_, env_, options_, storage_options_,
                   table_cache_.get(), iter, &meta,
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                   user_comparator(), newest_snapshot,
                   earliest_seqno_in_memtable);
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    mutex_.Lock();
  }

696
  Log(options_.info_log, "Level-0 table #%llu: %lld bytes %s",
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      (unsigned long long) meta.number,
      (unsigned long long) meta.file_size,
      s.ToString().c_str());
  delete iter;
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702
  pending_outputs_.erase(meta.number);
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  // 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,
                  meta.smallest, meta.largest);
  }

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

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Status DBImpl::WriteLevel0Table(MemTable* mem, VersionEdit* edit,
                                uint64_t* filenumber) {
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  mutex_.AssertHeld();
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  const uint64_t start_micros = env_->NowMicros();
  FileMetaData meta;
  meta.number = versions_->NewFileNumber();
  *filenumber = meta.number;
  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 flush table #%llu: started",
      (unsigned long long) meta.number);
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  Version* base = versions_->current();
  base->Ref();
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  Status s;
  {
    mutex_.Unlock();
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    s = BuildTable(dbname_, env_, options_, storage_options_,
                   table_cache_.get(), iter, &meta,
743 744
                   user_comparator(), newest_snapshot,
                   earliest_seqno_in_memtable);
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    mutex_.Lock();
  }
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  base->Unref();

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  Log(options_.info_log, "Level-0 flush table #%llu: %lld bytes %s",
      (unsigned long long) meta.number,
      (unsigned long long) meta.file_size,
      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
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  // 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.
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    if (base != nullptr && options_.max_background_compactions <= 1) {
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      level = base->PickLevelForMemTableOutput(min_user_key, max_user_key);
    }
    edit->AddFile(level, meta.number, meta.file_size,
                  meta.smallest, meta.largest);
  }

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

Status DBImpl::CompactMemTable(bool* madeProgress) {
  mutex_.AssertHeld();
  assert(imm_.size() != 0);

  if (!imm_.IsFlushPending()) {
    Log(options_.info_log, "Memcompaction already in progress");
    Status s = Status::IOError("Memcompaction already in progress");
    return s;
  }

  // Save the contents of the earliest memtable as a new Table
  // This will release and re-acquire the mutex.
  uint64_t file_number;
  MemTable* m = imm_.PickMemtableToFlush();
805
  if (m == nullptr) {
806 807 808 809 810 811 812 813 814 815 816 817
    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
  VersionEdit* edit = m->GetEdits();
  edit->SetPrevLogNumber(0);
  edit->SetLogNumber(logfile_number_);  // Earlier logs no longer needed

  Status s = WriteLevel0Table(m, edit, &file_number);

818
  if (s.ok() && shutting_down_.Acquire_Load()) {
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    s = Status::IOError(
      "Database shutdown started during memtable compaction"
    );
822
  }
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824
  // Replace immutable memtable with the generated Table
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  s = imm_.InstallMemtableFlushResults(
    m, versions_.get(), s, &mutex_, options_.info_log.get(),
    file_number, pending_outputs_);
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  if (s.ok()) {
830 831 832
    if (madeProgress) {
      *madeProgress = 1;
    }
833
    MaybeScheduleLogDBDeployStats();
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    // we could have deleted obsolete files here, but it is not
    // absolutely necessary because it could be also done as part
    // of other background compaction
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  }
  return s;
}

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void DBImpl::CompactRange(const Slice* begin, const Slice* end) {
  int max_level_with_files = 1;
  {
    MutexLock l(&mutex_);
    Version* base = versions_->current();
846
    for (int level = 1; level < NumberLevels(); level++) {
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      if (base->OverlapInLevel(level, begin, end)) {
        max_level_with_files = level;
      }
    }
  }
  TEST_CompactMemTable(); // TODO(sanjay): Skip if memtable does not overlap
  for (int level = 0; level < max_level_with_files; level++) {
    TEST_CompactRange(level, begin, end);
  }
}

858
int DBImpl::NumberLevels() {
859
  return options_.num_levels;
860 861 862
}

int DBImpl::MaxMemCompactionLevel() {
863
  return options_.max_mem_compaction_level;
864 865 866
}

int DBImpl::Level0StopWriteTrigger() {
867
  return options_.level0_stop_writes_trigger;
868 869
}

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

875 876 877 878
SequenceNumber DBImpl::GetLatestSequenceNumber() {
  return versions_->LastSequence();
}

879
Status DBImpl::GetUpdatesSince(SequenceNumber seq,
880
                               unique_ptr<TransactionLogIterator>* iter) {
881 882 883 884 885 886 887 888 889 890 891 892 893

  //  Get All Log Files.
  //  Sort Files
  //  Get the first entry from each file.
  //  Do binary search and open files and find the seq number.

  std::vector<LogFile> walFiles;
  // list wal files in main db dir.
  Status s = ListAllWALFiles(dbname_, &walFiles, kAliveLogFile);
  if (!s.ok()) {
    return s;
  }
  //  list wal files in archive dir.
894 895 896 897 898 899
  std::string archivedir = ArchivalDirectory(dbname_);
  if (env_->FileExists(archivedir)) {
    s = ListAllWALFiles(archivedir, &walFiles, kArchivedLogFile);
    if (!s.ok()) {
      return s;
    }
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  }

  if (walFiles.empty()) {
    return Status::IOError(" NO WAL Files present in the db");
  }
  //  std::shared_ptr would have been useful here.

907 908 909
  std::unique_ptr<std::vector<LogFile>> probableWALFiles(
    new std::vector<LogFile>());
  s = FindProbableWALFiles(&walFiles, probableWALFiles.get(), seq);
910 911
  if (!s.ok()) {
    return s;
912
  }
913
  iter->reset(
914 915
    new TransactionLogIteratorImpl(dbname_,
                                   &options_,
916
                                   storage_options_,
917
                                   seq,
918
                                   std::move(probableWALFiles),
919 920
                                   &last_flushed_sequence_));
  iter->get()->Next();
921
  return iter->get()->status();
922 923 924 925 926
}

Status DBImpl::FindProbableWALFiles(std::vector<LogFile>* const allLogs,
                                    std::vector<LogFile>* const result,
                                    const SequenceNumber target) {
927 928
  assert(allLogs != nullptr);
  assert(result != nullptr);
929 930

  std::sort(allLogs->begin(), allLogs->end());
931 932
  long start = 0; // signed to avoid overflow when target is < first file.
  long end = static_cast<long>(allLogs->size()) - 1;
933
  // Binary Search. avoid opening all files.
934 935
  while (end >= start) {
    long mid = start + (end - start) / 2;  // Avoid overflow.
936 937 938
    WriteBatch batch;
    Status s = ReadFirstRecord(allLogs->at(mid), &batch);
    if (!s.ok()) {
939 940
      if (CheckFileExistsAndEmpty(allLogs->at(mid))) {
        allLogs->erase(allLogs->begin() + mid);
941
        --end;
942 943
        continue;
      }
944 945 946 947 948 949
      return s;
    }
    SequenceNumber currentSeqNum = WriteBatchInternal::Sequence(&batch);
    if (currentSeqNum == target) {
      start = mid;
      end = mid;
950
      break;
951
    } else if (currentSeqNum < target) {
952
      start = mid + 1;
953
    } else {
954
      end = mid - 1;
955 956
    }
  }
957 958
  size_t startIndex = std::max(0l, end); // end could be -ve.
  for( size_t i = startIndex; i < allLogs->size(); ++i) {
959 960
    result->push_back(allLogs->at(i));
  }
961 962 963 964
  if (result->empty()) {
    return Status::IOError(
        "No probable files. Check if the db contains log files");
  }
965 966 967
  return Status::OK();
}

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bool DBImpl::CheckFileExistsAndEmpty(const LogFile& file) {
  if (file.type == kAliveLogFile) {
    const std::string fname = LogFileName(dbname_, file.logNumber);
    uint64_t file_size;
    Status s = env_->GetFileSize(fname, &file_size);
    if (s.ok() && file_size == 0) {
      return true;
    }
  }
  const std::string fname = ArchivedLogFileName(dbname_, file.logNumber);
  uint64_t file_size;
  Status s = env_->GetFileSize(fname, &file_size);
  if (s.ok() && file_size == 0) {
    return true;
  }
  return false;
}

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Status DBImpl::ReadFirstRecord(const LogFile& file, WriteBatch* const result) {

  if (file.type == kAliveLogFile) {
    std::string fname = LogFileName(dbname_, file.logNumber);
    Status status = ReadFirstLine(fname, result);
    if (!status.ok()) {
      //  check if the file got moved to archive.
      std::string archivedFile = ArchivedLogFileName(dbname_, file.logNumber);
      Status s = ReadFirstLine(archivedFile, result);
      if (!s.ok()) {
        return Status::IOError("Log File Has been deleted");
      }
    }
    return Status::OK();
  } else if (file.type == kArchivedLogFile) {
    std::string fname = ArchivedLogFileName(dbname_, file.logNumber);
    Status status = ReadFirstLine(fname, result);
    return status;
  }
  return Status::NotSupported("File Type Not Known");
}

Status DBImpl::ReadFirstLine(const std::string& fname,
                             WriteBatch* const batch) {
  struct LogReporter : public log::Reader::Reporter {
    Env* env;
    Logger* info_log;
    const char* fname;
1014
    Status* status;  // nullptr if options_.paranoid_checks==false
1015 1016
    virtual void Corruption(size_t bytes, const Status& s) {
      Log(info_log, "%s%s: dropping %d bytes; %s",
1017
          (this->status == nullptr ? "(ignoring error) " : ""),
1018
          fname, static_cast<int>(bytes), s.ToString().c_str());
1019
      if (this->status != nullptr && this->status->ok()) *this->status = s;
1020 1021 1022
    }
  };

1023
  unique_ptr<SequentialFile> file;
1024
  Status status = env_->NewSequentialFile(fname, &file, storage_options_);
1025 1026 1027 1028 1029 1030 1031 1032

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


  LogReporter reporter;
  reporter.env = env_;
1033
  reporter.info_log = options_.info_log.get();
1034
  reporter.fname = fname.c_str();
1035
  reporter.status = (options_.paranoid_checks ? &status : nullptr);
1036
  log::Reader reader(std::move(file), &reporter, true/*checksum*/,
1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055
                     0/*initial_offset*/);
  std::string scratch;
  Slice record;
  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);
}

Status DBImpl::ListAllWALFiles(const std::string& path,
                               std::vector<LogFile>* const logFiles,
                               WalFileType logType) {
1056
  assert(logFiles != nullptr);
1057 1058 1059 1060 1061
  std::vector<std::string> allFiles;
  const Status status = env_->GetChildren(path, &allFiles);
  if (!status.ok()) {
    return status;
  }
1062
  for (const auto& f : allFiles) {
1063 1064
    uint64_t number;
    FileType type;
1065
    if (ParseFileName(f, &number, &type) && type == kLogFile){
1066 1067 1068 1069 1070 1071
      logFiles->push_back(LogFile(number, logType));
    }
  }
  return status;
}

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void DBImpl::TEST_CompactRange(int level, const Slice* begin,const Slice* end) {
1073 1074
  assert(level >= 0);

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  InternalKey begin_storage, end_storage;

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  ManualCompaction manual;
  manual.level = level;
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  manual.done = false;
1080
  manual.in_progress = false;
1081 1082
  if (begin == nullptr) {
    manual.begin = nullptr;
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  } else {
    begin_storage = InternalKey(*begin, kMaxSequenceNumber, kValueTypeForSeek);
    manual.begin = &begin_storage;
  }
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  if (end == nullptr) {
    manual.end = nullptr;
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  } else {
    end_storage = InternalKey(*end, 0, static_cast<ValueType>(0));
    manual.end = &end_storage;
  }

  MutexLock l(&mutex_);
1095

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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
1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112
  // 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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  while (!manual.done) {
1114
    while (manual_compaction_ != nullptr) {
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      bg_cv_.Wait();
    }
    manual_compaction_ = &manual;
1118 1119 1120
    if (bg_compaction_scheduled_ == LargeNumber) {
      bg_compaction_scheduled_ = newvalue;
    }
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    MaybeScheduleCompaction();
    while (manual_compaction_ == &manual) {
      bg_cv_.Wait();
    }
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  }
1126 1127 1128 1129 1130 1131 1132 1133 1134
  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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}

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Status DBImpl::FlushMemTable(const FlushOptions& options) {
1138 1139
  // nullptr batch means just wait for earlier writes to be done
  Status s = Write(WriteOptions(), nullptr);
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  if (s.ok() && options.wait) {
1141
    // Wait until the compaction completes
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    s = WaitForCompactMemTable();
1143 1144
  }
  return s;
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}

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Status DBImpl::WaitForCompactMemTable() {
1148 1149 1150
  Status s;
  // Wait until the compaction completes
  MutexLock l(&mutex_);
1151
  while (imm_.size() > 0 && bg_error_.ok()) {
1152 1153
    bg_cv_.Wait();
  }
1154
  if (imm_.size() != 0) {
1155 1156 1157
    s = bg_error_;
  }
  return s;
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}

Status DBImpl::TEST_CompactMemTable() {
  return FlushMemTable(FlushOptions());
}

1164
Status DBImpl::TEST_WaitForCompactMemTable() {
1165
  return WaitForCompactMemTable();
1166 1167 1168
}

Status DBImpl::TEST_WaitForCompact() {
1169 1170 1171 1172 1173 1174
  // Wait until the compaction completes
  MutexLock l(&mutex_);
  while (bg_compaction_scheduled_ && bg_error_.ok()) {
    bg_cv_.Wait();
  }
  return bg_error_;
1175 1176
}

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void DBImpl::MaybeScheduleCompaction() {
  mutex_.AssertHeld();
1179
  if (bg_compaction_scheduled_ >= options_.max_background_compactions) {
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    // Already scheduled
  } else if (shutting_down_.Acquire_Load()) {
    // DB is being deleted; no more background compactions
1183
  } else if (!imm_.IsFlushPending() &&
1184
             manual_compaction_ == nullptr &&
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             !versions_->NeedsCompaction()) {
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    // No work to be done
  } else {
1188
    bg_compaction_scheduled_++;
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    env_->Schedule(&DBImpl::BGWork, this);
  }
}

void DBImpl::BGWork(void* db) {
  reinterpret_cast<DBImpl*>(db)->BackgroundCall();
}

void DBImpl::BackgroundCall() {
1198
  bool madeProgress = false;
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  DeletionState deletion_state;
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  MutexLock l(&mutex_);
1201
  // 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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  if (!shutting_down_.Acquire_Load()) {
1204
    Status s = BackgroundCompaction(&madeProgress, deletion_state);
1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215 1216
    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();
      env_->SleepForMicroseconds(1000000);
      mutex_.Lock();
    }
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  }
1218

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  // delete unnecessary files if any, this is done outside the mutex
  if (!deletion_state.live.empty()) {
    mutex_.Unlock();
    PurgeObsoleteFiles(deletion_state);
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    EvictObsoleteFiles(deletion_state);
1224
    mutex_.Lock();
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  }

1227
  bg_compaction_scheduled_--;
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  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
1233 1234 1235 1236
  // last compaction.
  if (madeProgress) {
    MaybeScheduleCompaction();
  }
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  bg_cv_.SignalAll();
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}

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Status DBImpl::BackgroundCompaction(bool* madeProgress,
1241
  DeletionState& deletion_state) {
1242
  *madeProgress = false;
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  mutex_.AssertHeld();
1244

1245
  while (imm_.IsFlushPending()) {
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    Log(options_.info_log,
1247 1248 1249 1250 1251 1252
        "BackgroundCompaction doing CompactMemTable, compaction slots available %d",
        options_.max_background_compactions - bg_compaction_scheduled_);
    Status stat = CompactMemTable(madeProgress);
    if (!stat.ok()) {
      return stat;
    }
1253 1254
  }

1255
  unique_ptr<Compaction> c;
1256
  bool is_manual = (manual_compaction_ != nullptr) &&
1257
                   (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_;
1261 1262
    assert(!m->in_progress);
    m->in_progress = true; // another thread cannot pick up the same work
1263 1264
    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;
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    } 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()));
1275
  } else if (!options_.disable_auto_compactions) {
1276
    c.reset(versions_->PickCompaction());
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  }

  Status status;
1280
  if (!c) {
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    // Nothing to do
1282
    Log(options_.info_log, "Compaction nothing to do");
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  } else if (!is_manual && c->IsTrivialMove()) {
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    // Move file to next level
1285
    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,
                       f->smallest, f->largest);
1290
    status = versions_->LogAndApply(c->edit(), &mutex_);
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    VersionSet::LevelSummaryStorage tmp;
1292
    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));
1298
    versions_->ReleaseCompactionFiles(c.get(), status);
1299
    *madeProgress = true;
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  } else {
1301
    MaybeScheduleCompaction(); // do more compaction work in parallel.
1302
    CompactionState* compact = new CompactionState(c.get());
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    status = DoCompactionWork(compact);
    CleanupCompaction(compact);
1305
    versions_->ReleaseCompactionFiles(c.get(), status);
1306
    c->ReleaseInputs();
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    FindObsoleteFiles(deletion_state);
1308
    *madeProgress = true;
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  }
1310
  c.reset();
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  if (status.ok()) {
    // Done
  } else if (shutting_down_.Acquire_Load()) {
    // Ignore compaction errors found during shutting down
  } else {
1317
    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_;
1326 1327 1328
    if (!status.ok()) {
      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;
    }
1335
    m->in_progress = false; // not being processed anymore
1336
    manual_compaction_ = nullptr;
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  }
1338
  return status;
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}

void DBImpl::CleanupCompaction(CompactionState* compact) {
  mutex_.AssertHeld();
1343
  if (compact->builder != nullptr) {
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    // May happen if we get a shutdown call in the middle of compaction
    compact->builder->Abandon();
1346
    compact->builder.reset();
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  } else {
1348
    assert(compact->outfile == nullptr);
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  }
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  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);
  }
  delete compact;
}

1357 1358 1359 1360 1361
// 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();
1362 1363
  assert(compact != nullptr);
  assert(compact->builder == nullptr);
1364
  int filesNeeded = compact->compaction->num_input_files(1);
1365
  for (int i = 0; i < filesNeeded; i++) {
1366 1367 1368 1369 1370 1371 1372 1373 1374
    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();
1375
  for (const auto file_number : compact->allocated_file_numbers) {
1376 1377 1378 1379 1380
    pending_outputs_.erase(file_number);
    // Log(options_.info_log, "XXX releasing unused file num %d", file_number);
  }
}

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Status DBImpl::OpenCompactionOutputFile(CompactionState* compact) {
1382 1383
  assert(compact != nullptr);
  assert(compact->builder == nullptr);
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  uint64_t file_number;
1385 1386 1387 1388 1389 1390 1391
  // 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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    mutex_.Lock();
    file_number = versions_->NewFileNumber();
    pending_outputs_.insert(file_number);
    mutex_.Unlock();
  }
1397 1398 1399 1400 1401
  CompactionState::Output out;
  out.number = file_number;
  out.smallest.Clear();
  out.largest.Clear();
  compact->outputs.push_back(out);
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  // Make the output file
  std::string fname = TableFileName(dbname_, file_number);
1405
  Status s = env_->NewWritableFile(fname, &compact->outfile, storage_options_);
1406

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  if (s.ok()) {
1408 1409 1410 1411 1412
    // Over-estimate slightly so we don't end up just barely crossing
    // the threshold.
    compact->outfile->SetPreallocationBlockSize(
      1.1 * versions_->MaxFileSizeForLevel(compact->compaction->level() + 1));

1413 1414
    compact->builder.reset(new TableBuilder(options_, compact->outfile.get(),
                                            compact->compaction->level() + 1));
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  }
  return s;
}

Status DBImpl::FinishCompactionOutputFile(CompactionState* compact,
                                          Iterator* input) {
1421
  assert(compact != nullptr);
1422
  assert(compact->outfile);
1423
  assert(compact->builder != nullptr);
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  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;
1439
  compact->builder.reset();
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  // Finish and check for file errors
1442
  if (s.ok() && !options_.disableDataSync) {
1443 1444 1445 1446 1447
    if (options_.use_fsync) {
      s = compact->outfile->Fsync();
    } else {
      s = compact->outfile->Sync();
    }
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  }
  if (s.ok()) {
    s = compact->outfile->Close();
  }
1452
  compact->outfile.reset();
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  if (s.ok() && current_entries > 0) {
    // Verify that the table is usable
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1456
    Iterator* iter = table_cache_->NewIterator(ReadOptions(),
1457
                                               storage_options_,
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1458 1459
                                               output_number,
                                               current_bytes);
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    s = iter->status();
    delete iter;
    if (s.ok()) {
1463
      Log(options_.info_log,
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          "Generated table #%llu: %lld keys, %lld bytes",
          (unsigned long long) output_number,
          (unsigned long long) current_entries,
          (unsigned long long) current_bytes);
    }
  }
  return s;
}


Status DBImpl::InstallCompactionResults(CompactionState* compact) {
  mutex_.AssertHeld();
1476 1477 1478 1479 1480

  // 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.
1481
  if (!versions_->VerifyCompactionFileConsistency(compact->compaction)) {
1482 1483 1484 1485 1486 1487 1488 1489
    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");
  }

1490
  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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  for (size_t i = 0; i < compact->outputs.size(); i++) {
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    const CompactionState::Output& out = compact->outputs[i];
    compact->compaction->edit()->AddFile(
        level + 1,
        out.number, out.file_size, out.smallest, out.largest);
  }
1506
  return versions_->LogAndApply(compact->compaction->edit(), &mutex_);
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}

1509 1510 1511 1512 1513 1514 1515 1516 1517
//
// 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(
  SequenceNumber in, std::vector<SequenceNumber>& snapshots) {
1518
  SequenceNumber prev __attribute__((unused)) = 0;
1519 1520 1521 1522
  for (const auto cur : snapshots) {
    assert(prev <= cur);
    if (cur >= in) {
      return cur;
1523
    }
1524 1525
    prev = cur; // assignment
    assert(prev);
1526 1527 1528 1529 1530 1531 1532 1533
  }
  Log(options_.info_log,
      "Looking for seqid %ld but maxseqid is %ld", in,
      snapshots[snapshots.size()-1]);
  assert(0);
  return 0;
}

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Status DBImpl::DoCompactionWork(CompactionState* compact) {
1535 1536
  int64_t imm_micros = 0;  // Micros spent doing imm_ compactions

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  Log(options_.info_log,
1538
      "Compacting %d@%d + %d@%d files, score %.2f slots available %d",
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      compact->compaction->num_input_files(0),
      compact->compaction->level(),
      compact->compaction->num_input_files(1),
1542
      compact->compaction->level() + 1,
1543
      compact->compaction->score(),
1544
      options_.max_background_compactions - bg_compaction_scheduled_);
1545 1546
  char scratch[256];
  compact->compaction->Summary(scratch, sizeof(scratch));
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  Log(options_.info_log, "Compaction start summary: %s\n", scratch);
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  assert(versions_->NumLevelFiles(compact->compaction->level()) > 0);
1550
  assert(compact->builder == nullptr);
1551
  assert(!compact->outfile);
1552 1553 1554 1555 1556 1557 1558 1559

  SequenceNumber visible_at_tip = 0;
  SequenceNumber earliest_snapshot;
  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;
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  } else {
1561 1562 1563 1564
    // 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];
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  }

1567 1568 1569 1570 1571 1572 1573 1574 1575 1576
  // Is this compaction producing files at the bottommost level?
  bool bottommost_level = true;
  for (int i = compact->compaction->level() + 2;
       i < versions_->NumberLevels(); i++) {
    if (versions_->NumLevelFiles(i) > 0) {
      bottommost_level = false;
      break;
    }
  }

1577 1578 1579
  // Allocate the output file numbers before we release the lock
  AllocateCompactionOutputFileNumbers(compact);

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  // Release mutex while we're actually doing the compaction work
  mutex_.Unlock();

1583
  const uint64_t start_micros = env_->NowMicros();
1584
  unique_ptr<Iterator> input(versions_->MakeInputIterator(compact->compaction));
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  input->SeekToFirst();
  Status status;
  ParsedInternalKey ikey;
  std::string current_user_key;
  bool has_current_user_key = false;
1590 1591
  SequenceNumber last_sequence_for_key __attribute__((unused)) =
    kMaxSequenceNumber;
1592
  SequenceNumber visible_in_snapshot = kMaxSequenceNumber;
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  std::string compaction_filter_value;
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  for (; input->Valid() && !shutting_down_.Acquire_Load(); ) {
1595
    // Prioritize immutable compaction work
1596
    if (imm_.imm_flush_needed.NoBarrier_Load() != nullptr) {
1597 1598
      const uint64_t imm_start = env_->NowMicros();
      mutex_.Lock();
1599
      if (imm_.IsFlushPending()) {
1600
        CompactMemTable();
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1601
        bg_cv_.SignalAll();  // Wakeup MakeRoomForWrite() if necessary
1602 1603 1604 1605 1606
      }
      mutex_.Unlock();
      imm_micros += (env_->NowMicros() - imm_start);
    }

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    Slice key = input->key();
1608
    Slice value = input->value();
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Haobo Xu 已提交
1609

1610
    if (compact->compaction->ShouldStopBefore(key) &&
1611
        compact->builder != nullptr) {
1612
      status = FinishCompactionOutputFile(compact, input.get());
1613 1614 1615 1616 1617 1618
      if (!status.ok()) {
        break;
      }
    }

    // Handle key/value, add to state, etc.
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    bool drop = false;
    if (!ParseInternalKey(key, &ikey)) {
      // Do not hide error keys
      current_user_key.clear();
      has_current_user_key = false;
      last_sequence_for_key = kMaxSequenceNumber;
1625
      visible_in_snapshot = kMaxSequenceNumber;
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1626 1627 1628 1629 1630 1631 1632 1633
    } 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;
1634
        visible_in_snapshot = kMaxSequenceNumber;
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      }

1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647
      // 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.
      SequenceNumber visible = visible_at_tip ? visible_at_tip :
                                 findEarliestVisibleSnapshot(ikey.sequence,
                                 compact->existing_snapshots);

      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.
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        // Hidden by an newer entry for same user key
1649
        assert(last_sequence_for_key >= ikey.sequence);
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        drop = true;    // (A)
1651
        RecordTick(options_.statistics, COMPACTION_KEY_DROP_NEWER_ENTRY);
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1652
      } else if (ikey.type == kTypeDeletion &&
1653
                 ikey.sequence <= earliest_snapshot &&
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                 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;
1663
        RecordTick(options_.statistics, COMPACTION_KEY_DROP_OBSOLETE);
1664
      } else if (options_.CompactionFilter != nullptr &&
1665
                 ikey.type != kTypeDeletion &&
1666
                 ikey.sequence < earliest_snapshot) {
1667
        // If the user has specified a compaction filter, then invoke
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1668
        // it. If the return value of the compaction filter is true,
1669
        // drop this key from the output.
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1670 1671
        bool value_changed = false;
        compaction_filter_value.clear();
1672
        drop = options_.CompactionFilter(options_.compaction_filter_args,
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                                         compact->compaction->level(),
                                         ikey.user_key, value,
                                         &compaction_filter_value,
                                         &value_changed);
        // Another example of statistics update without holding the lock
        // TODO: clean it up
1679 1680 1681
        if (drop) {
          RecordTick(options_.statistics, COMPACTION_KEY_DROP_USER);
        }
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1683
        // If the application wants to change the value, then do so here.
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1684 1685
        if (value_changed) {
          value = compaction_filter_value;
1686
        }
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      }

      last_sequence_for_key = ikey.sequence;
1690
      visible_in_snapshot = visible;
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    }
#if 0
1693
    Log(options_.info_log,
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        "  Compact: %s, seq %d, type: %d %d, drop: %d, is_base: %d, "
1695
        "%d smallest_snapshot: %d level: %d bottommost %d",
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        ikey.user_key.ToString().c_str(),
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        (int)ikey.sequence, ikey.type, kTypeValue, drop,
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        compact->compaction->IsBaseLevelForKey(ikey.user_key),
1699 1700
        (int)last_sequence_for_key, (int)earliest_snapshot,
        compact->compaction->level(), bottommost_level);
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#endif

    if (!drop) {
1704

1705 1706 1707
      char* kptr = (char*)key.data();
      std::string kstr;

1708 1709 1710 1711 1712 1713
      // 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.
      if (bottommost_level && ikey.sequence < earliest_snapshot) {
        assert(ikey.type != kTypeDeletion);
1714 1715 1716 1717 1718
        // 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);
1719
      }
1720

1721 1722 1723
      Slice newkey(kptr, key.size());
      assert((key.clear(), 1)); // we do not need 'key' anymore

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      // Open output file if necessary
1725
      if (compact->builder == nullptr) {
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1726 1727 1728 1729 1730 1731
        status = OpenCompactionOutputFile(compact);
        if (!status.ok()) {
          break;
        }
      }
      if (compact->builder->NumEntries() == 0) {
1732
        compact->current_output()->smallest.DecodeFrom(newkey);
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      }
1734 1735
      compact->current_output()->largest.DecodeFrom(newkey);
      compact->builder->Add(newkey, value);
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1736 1737 1738 1739

      // Close output file if it is big enough
      if (compact->builder->FileSize() >=
          compact->compaction->MaxOutputFileSize()) {
1740
        status = FinishCompactionOutputFile(compact, input.get());
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1741 1742 1743 1744 1745 1746 1747 1748 1749 1750
        if (!status.ok()) {
          break;
        }
      }
    }

    input->Next();
  }

  if (status.ok() && shutting_down_.Acquire_Load()) {
1751
    status = Status::IOError("Database shutdown started during compaction");
J
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1752
  }
1753
  if (status.ok() && compact->builder != nullptr) {
1754
    status = FinishCompactionOutputFile(compact, input.get());
J
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1755 1756 1757 1758
  }
  if (status.ok()) {
    status = input->status();
  }
1759
  input.reset();
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1760

1761 1762
  CompactionStats stats;
  stats.micros = env_->NowMicros() - start_micros - imm_micros;
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  if (options_.statistics) {
    options_.statistics->measureTime(COMPACTION_TIME, stats.micros);
  }
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1766 1767
  stats.files_in_leveln = compact->compaction->num_input_files(0);
  stats.files_in_levelnp1 = compact->compaction->num_input_files(1);
1768 1769

  int num_output_files = compact->outputs.size();
1770
  if (compact->builder != nullptr) {
1771 1772 1773 1774 1775
    // An error occured so ignore the last output.
    assert(num_output_files > 0);
    --num_output_files;
  }
  stats.files_out_levelnp1 = num_output_files;
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1776 1777 1778 1779 1780 1781 1782

  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;

1783
  for (int i = 0; i < num_output_files; i++) {
1784 1785 1786
    stats.bytes_written += compact->outputs[i].file_size;
  }

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1787
  mutex_.Lock();
1788
  stats_[compact->compaction->level() + 1].Add(stats);
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1790 1791 1792 1793
  // if there were any unused file number (mostly in case of
  // compaction error), free up the entry from pending_putputs
  ReleaseCompactionUnusedFileNumbers(compact);

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  if (status.ok()) {
    status = InstallCompactionResults(compact);
  }
1797
  VersionSet::LevelSummaryStorage tmp;
1798
  Log(options_.info_log,
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      "compacted to: %s, %.1f MB/sec, level %d, files in(%d, %d) out(%d) "
1800
      "MB in(%.1f, %.1f) out(%.1f), amplify(%.1f) %s\n",
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      versions_->LevelSummary(&tmp),
      (stats.bytes_readn + stats.bytes_readnp1 + stats.bytes_written) /
          (double) stats.micros,
      compact->compaction->level() + 1,
      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,
      (stats.bytes_written + stats.bytes_readnp1) /
1810 1811
          (double) stats.bytes_readn,
      status.ToString().c_str());
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Mark Callaghan 已提交
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  return status;
}

1816 1817 1818 1819
namespace {
struct IterState {
  port::Mutex* mu;
  Version* version;
1820
  std::vector<MemTable*> mem; // includes both mem_ and imm_
1821 1822 1823 1824 1825
};

static void CleanupIteratorState(void* arg1, void* arg2) {
  IterState* state = reinterpret_cast<IterState*>(arg1);
  state->mu->Lock();
1826 1827 1828
  for (unsigned int i = 0; i < state->mem.size(); i++) {
    state->mem[i]->Unref();
  }
1829 1830 1831 1832
  state->version->Unref();
  state->mu->Unlock();
  delete state;
}
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1833
}  // namespace
1834

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Iterator* DBImpl::NewInternalIterator(const ReadOptions& options,
                                      SequenceNumber* latest_snapshot) {
1837
  IterState* cleanup = new IterState;
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jorlow@chromium.org 已提交
1838
  mutex_.Lock();
1839
  *latest_snapshot = versions_->LastSequence();
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1840

1841
  // Collect together all needed child iterators for mem
J
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1842
  std::vector<Iterator*> list;
1843
  mem_->Ref();
1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854
  list.push_back(mem_->NewIterator());
  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();
    list.push_back(m->NewIterator());
    cleanup->mem.push_back(m);
1855
  }
1856 1857

  // Collect iterators for files in L0 - Ln
1858
  versions_->current()->AddIterators(options, storage_options_, &list);
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1859 1860 1861
  Iterator* internal_iter =
      NewMergingIterator(&internal_comparator_, &list[0], list.size());
  versions_->current()->Ref();
1862 1863 1864

  cleanup->mu = &mutex_;
  cleanup->version = versions_->current();
1865
  internal_iter->RegisterCleanup(CleanupIteratorState, cleanup, nullptr);
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1866 1867 1868 1869 1870 1871 1872 1873 1874 1875

  mutex_.Unlock();
  return internal_iter;
}

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

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1876
int64_t DBImpl::TEST_MaxNextLevelOverlappingBytes() {
1877 1878 1879 1880
  MutexLock l(&mutex_);
  return versions_->MaxNextLevelOverlappingBytes();
}

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1881 1882 1883
Status DBImpl::Get(const ReadOptions& options,
                   const Slice& key,
                   std::string* value) {
1884
  Status s;
1885

1886 1887 1888
  std::unique_ptr<StopWatch> sw = stats::StartStopWatch(env_,
                                                        options_.statistics,
                                                        DB_GET);
1889
  SequenceNumber snapshot;
1890
  MutexLock l(&mutex_);
1891
  if (options.snapshot != nullptr) {
1892 1893 1894
    snapshot = reinterpret_cast<const SnapshotImpl*>(options.snapshot)->number_;
  } else {
    snapshot = versions_->LastSequence();
J
jorlow@chromium.org 已提交
1895
  }
1896

1897
  MemTable* mem = mem_;
1898
  MemTableList imm = imm_;
1899
  Version* current = versions_->current();
1900
  mem->Ref();
1901
  imm.RefAll();
1902
  current->Ref();
1903

1904 1905 1906
  // Unlock while reading from files and memtables

  mutex_.Unlock();
1907
  bool have_stat_update = false;
1908
  Version::GetStats stats;
1909 1910 1911 1912 1913 1914 1915 1916 1917
  // First look in the memtable, then in the immutable memtable (if any).
  LookupKey lkey(key, snapshot);
  if (mem->Get(lkey, value, &s)) {
    // Done
  } else if (imm.Get(lkey, value, &s)) {
    // Done
  } else {
    s = current->Get(options, lkey, value, &stats);
    have_stat_update = true;
1918
  }
1919
  mutex_.Lock();
1920

1921 1922
  if (!options_.disable_seek_compaction &&
      have_stat_update && current->UpdateStats(stats)) {
1923 1924
    MaybeScheduleCompaction();
  }
1925
  mem->Unref();
1926
  imm.UnrefAll();
1927
  current->Unref();
1928
  RecordTick(options_.statistics, NUMBER_KEYS_READ);
1929
  RecordTick(options_.statistics, BYTES_READ, value->size());
1930
  return s;
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1931 1932 1933 1934 1935
}

Iterator* DBImpl::NewIterator(const ReadOptions& options) {
  SequenceNumber latest_snapshot;
  Iterator* internal_iter = NewInternalIterator(options, &latest_snapshot);
1936 1937
  return NewDBIterator(
      &dbname_, env_, user_comparator(), internal_iter,
1938
      (options.snapshot != nullptr
1939 1940
       ? reinterpret_cast<const SnapshotImpl*>(options.snapshot)->number_
       : latest_snapshot));
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1941 1942 1943 1944
}

const Snapshot* DBImpl::GetSnapshot() {
  MutexLock l(&mutex_);
1945
  return snapshots_.New(versions_->LastSequence());
J
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1946 1947 1948 1949
}

void DBImpl::ReleaseSnapshot(const Snapshot* s) {
  MutexLock l(&mutex_);
1950
  snapshots_.Delete(reinterpret_cast<const SnapshotImpl*>(s));
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jorlow@chromium.org 已提交
1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961
}

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

Status DBImpl::Delete(const WriteOptions& options, const Slice& key) {
  return DB::Delete(options, key);
}

1962 1963 1964 1965
Status DBImpl::Write(const WriteOptions& options, WriteBatch* my_batch) {
  Writer w(&mutex_);
  w.batch = my_batch;
  w.sync = options.sync;
H
heyongqiang 已提交
1966
  w.disableWAL = options.disableWAL;
1967
  w.done = false;
1968

1969 1970 1971
  std::unique_ptr<StopWatch> sw = stats::StartStopWatch(env_,
                                                        options_.statistics,
                                                        DB_WRITE);
1972
  MutexLock l(&mutex_);
1973 1974 1975 1976 1977 1978 1979 1980 1981
  writers_.push_back(&w);
  while (!w.done && &w != writers_.front()) {
    w.cv.Wait();
  }
  if (w.done) {
    return w.status;
  }

  // May temporarily unlock and wait.
1982
  Status status = MakeRoomForWrite(my_batch == nullptr);
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1983
  uint64_t last_sequence = versions_->LastSequence();
1984
  Writer* last_writer = &w;
1985
  if (status.ok() && my_batch != nullptr) {  // nullptr batch is for compactions
1986
    WriteBatch* updates = BuildBatchGroup(&last_writer);
1987 1988
    const SequenceNumber current_sequence = last_sequence + 1;
    WriteBatchInternal::SetSequence(updates, current_sequence);
1989 1990 1991 1992
    int my_batch_count = WriteBatchInternal::Count(updates);
    last_sequence += my_batch_count;
    // Record statistics
    RecordTick(options_.statistics, NUMBER_KEYS_WRITTEN, my_batch_count);
1993 1994 1995
    RecordTick(options_.statistics,
               BYTES_WRITTEN,
               WriteBatchInternal::ByteSize(updates));
1996 1997 1998 1999
    // 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_.
2000 2001
    {
      mutex_.Unlock();
2002 2003 2004 2005
      if (options.disableWAL) {
        flush_on_destroy_ = true;
      }

H
heyongqiang 已提交
2006 2007 2008
      if (!options.disableWAL) {
        status = log_->AddRecord(WriteBatchInternal::Contents(updates));
        if (status.ok() && options.sync) {
2009
          if (options_.use_fsync) {
2010
            status = log_->file()->Fsync();
2011
          } else {
2012
            status = log_->file()->Sync();
2013
          }
H
heyongqiang 已提交
2014
        }
2015 2016 2017 2018 2019
      }
      if (status.ok()) {
        status = WriteBatchInternal::InsertInto(updates, mem_);
      }
      mutex_.Lock();
J
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2020
    }
2021
    last_flushed_sequence_ = current_sequence;
2022
    if (updates == &tmp_batch_) tmp_batch_.Clear();
2023 2024

    versions_->SetLastSequence(last_sequence);
J
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2025
  }
2026 2027 2028 2029 2030 2031 2032 2033 2034 2035 2036 2037 2038 2039 2040 2041

  while (true) {
    Writer* ready = writers_.front();
    writers_.pop_front();
    if (ready != &w) {
      ready->status = status;
      ready->done = true;
      ready->cv.Signal();
    }
    if (ready == last_writer) break;
  }

  // Notify new head of write queue
  if (!writers_.empty()) {
    writers_.front()->cv.Signal();
  }
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2042 2043 2044
  return status;
}

2045
// REQUIRES: Writer list must be non-empty
2046
// REQUIRES: First writer must have a non-nullptr batch
2047 2048 2049 2050
WriteBatch* DBImpl::BuildBatchGroup(Writer** last_writer) {
  assert(!writers_.empty());
  Writer* first = writers_.front();
  WriteBatch* result = first->batch;
2051
  assert(result != nullptr);
2052 2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063 2064 2065 2066 2067 2068 2069 2070 2071 2072

  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;
    }

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2073 2074 2075 2076 2077 2078
    if (!w->disableWAL && first->disableWAL) {
      // Do not include a write that needs WAL into a batch that has
      // WAL disabled.
      break;
    }

2079
    if (w->batch != nullptr) {
2080 2081 2082 2083 2084 2085 2086 2087 2088
      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
2089
        result = &tmp_batch_;
2090 2091 2092 2093 2094 2095 2096 2097 2098 2099
        assert(WriteBatchInternal::Count(result) == 0);
        WriteBatchInternal::Append(result, first->batch);
      }
      WriteBatchInternal::Append(result, w->batch);
    }
    *last_writer = w;
  }
  return result;
}

2100
// REQUIRES: mutex_ is held
2101
// REQUIRES: this thread is currently at the front of the writer queue
2102 2103
Status DBImpl::MakeRoomForWrite(bool force) {
  mutex_.AssertHeld();
2104
  assert(!writers_.empty());
2105
  bool allow_delay = !force;
2106 2107
  bool allow_rate_limit_delay = !force;
  uint64_t rate_limit_delay_millis = 0;
2108
  Status s;
2109
  double score;
2110

2111 2112 2113 2114 2115
  while (true) {
    if (!bg_error_.ok()) {
      // Yield previous error
      s = bg_error_;
      break;
2116 2117
    } else if (
        allow_delay &&
2118
        versions_->NumLevelFiles(0) >=
2119
          options_.level0_slowdown_writes_trigger) {
2120 2121 2122 2123 2124 2125 2126
      // 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
      // individual write by 1ms to reduce latency variance.  Also,
      // this delay hands over some CPU to the compaction thread in
      // case it is sharing the same core as the writer.
      mutex_.Unlock();
2127
      uint64_t t1 = env_->NowMicros();
2128
      env_->SleepForMicroseconds(1000);
2129 2130
      uint64_t delayed = env_->NowMicros() - t1;
      stall_level0_slowdown_ += delayed;
2131
      allow_delay = false;  // Do not delay a single write more than once
2132 2133
      //Log(options_.info_log,
      //    "delaying write %llu usecs for level0_slowdown_writes_trigger\n",
2134
      //     (long long unsigned int)delayed);
2135
      mutex_.Lock();
2136
      delayed_writes_++;
2137 2138 2139
    } else if (!force &&
               (mem_->ApproximateMemoryUsage() <= options_.write_buffer_size)) {
      // There is room in current memtable
2140 2141 2142
      if (allow_delay) {
        DelayLoggingAndReset();
      }
2143
      break;
2144
    } else if (imm_.size() == options_.max_write_buffer_number - 1) {
2145
      // We have filled up the current memtable, but the previous
2146 2147
      // ones are still being compacted, so we wait.
      DelayLoggingAndReset();
2148
      Log(options_.info_log, "wait for memtable compaction...\n");
M
Mark Callaghan 已提交
2149
      uint64_t t1 = env_->NowMicros();
H
hans@chromium.org 已提交
2150
      bg_cv_.Wait();
M
Mark Callaghan 已提交
2151
      stall_memtable_compaction_ += env_->NowMicros() - t1;
2152
    } else if (versions_->NumLevelFiles(0) >=
2153
               options_.level0_stop_writes_trigger) {
2154
      // There are too many level-0 files.
2155
      DelayLoggingAndReset();
M
Mark Callaghan 已提交
2156
      uint64_t t1 = env_->NowMicros();
2157
      Log(options_.info_log, "wait for fewer level0 files...\n");
H
hans@chromium.org 已提交
2158
      bg_cv_.Wait();
M
Mark Callaghan 已提交
2159
      stall_level0_num_files_ += env_->NowMicros() - t1;
2160
    } else if (
2161
        allow_rate_limit_delay &&
2162 2163 2164
        options_.rate_limit > 1.0 &&
        (score = versions_->MaxCompactionScore()) > options_.rate_limit) {
      // Delay a write when the compaction score for any level is too large.
2165
      int max_level = versions_->MaxCompactionScoreLevel();
2166
      mutex_.Unlock();
2167
      uint64_t t1 = env_->NowMicros();
2168
      env_->SleepForMicroseconds(1000);
2169
      uint64_t delayed = env_->NowMicros() - t1;
2170 2171 2172
      stall_leveln_slowdown_[max_level] += delayed;
      // Make sure the following value doesn't round to zero.
      rate_limit_delay_millis += std::max((delayed / 1000), (uint64_t) 1);
2173 2174
      if (rate_limit_delay_millis >=
          (unsigned)options_.rate_limit_delay_milliseconds) {
2175 2176 2177 2178 2179
        allow_rate_limit_delay = false;
      }
      // Log(options_.info_log,
      //    "delaying write %llu usecs for rate limits with max score %.2f\n",
      //    (long long unsigned int)delayed, score);
2180
      mutex_.Lock();
2181 2182
    } else {
      // Attempt to switch to a new memtable and trigger compaction of old
2183
      DelayLoggingAndReset();
2184 2185
      assert(versions_->PrevLogNumber() == 0);
      uint64_t new_log_number = versions_->NewFileNumber();
2186
      unique_ptr<WritableFile> lfile;
2187 2188 2189 2190 2191 2192 2193
      StorageOptions soptions(storage_options_);
      soptions.DisableMmapWrites();
      s = env_->NewWritableFile(
            LogFileName(dbname_, new_log_number),
            &lfile,
            soptions
          );
2194
      if (!s.ok()) {
H
heyongqiang 已提交
2195
        // Avoid chewing through file number space in a tight loop.
2196
        versions_->ReuseFileNumber(new_log_number);
2197 2198
        break;
      }
2199 2200 2201
      // 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);
2202
      logfile_number_ = new_log_number;
2203
      log_.reset(new log::Writer(std::move(lfile)));
2204 2205
      imm_.Add(mem_);
      mem_ = new MemTable(internal_comparator_, NumberLevels());
2206
      mem_->Ref();
2207 2208 2209 2210 2211 2212 2213 2214 2215 2216
      force = false;   // Do not force another compaction if have room
      MaybeScheduleCompaction();
    }
  }
  return s;
}

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

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jorlow@chromium.org 已提交
2217 2218 2219 2220 2221 2222 2223 2224 2225 2226
  MutexLock l(&mutex_);
  Slice in = property;
  Slice prefix("leveldb.");
  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();
2227
    if (!ok || (int)level >= NumberLevels()) {
J
jorlow@chromium.org 已提交
2228 2229
      return false;
    } else {
2230
      char buf[100];
D
dgrogan@chromium.org 已提交
2231 2232
      snprintf(buf, sizeof(buf), "%d",
               versions_->NumLevelFiles(static_cast<int>(level)));
2233
      *value = buf;
J
jorlow@chromium.org 已提交
2234 2235
      return true;
    }
2236 2237 2238 2239 2240 2241 2242 2243 2244 2245 2246 2247 2248 2249 2250 2251 2252
  } 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;

2253
  } else if (in == "stats") {
M
Mark Callaghan 已提交
2254 2255 2256 2257
    char buf[1000];
    uint64_t total_bytes = 0;
    uint64_t micros_up = env_->NowMicros() - started_at_;
    double seconds_up = micros_up / 1000000.0;
2258
    uint64_t total_slowdown = 0;
M
Mark Callaghan 已提交
2259 2260

    // Pardon the long line but I think it is easier to read this way.
2261 2262
    snprintf(buf, sizeof(buf),
             "                               Compactions\n"
2263 2264
             "Level  Files Size(MB) Time(sec)  Read(MB) Write(MB)    Rn(MB)  Rnp1(MB)  Wnew(MB) Amplify Read(MB/s) Write(MB/s)      Rn     Rnp1     Wnp1     NewW    Count  Ln-stall\n"
             "----------------------------------------------------------------------------------------------------------------------------------------------------------------------\n"
2265 2266
             );
    value->append(buf);
2267
    for (int level = 0; level < NumberLevels(); level++) {
2268 2269
      int files = versions_->NumLevelFiles(level);
      if (stats_[level].micros > 0 || files > 0) {
M
Mark Callaghan 已提交
2270 2271 2272 2273 2274 2275 2276 2277 2278 2279
        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
            : (stats_[level].bytes_written + stats_[level].bytes_readnp1) /
                (double) stats_[level].bytes_readn;

        total_bytes += bytes_read + stats_[level].bytes_written;
2280 2281
        snprintf(
            buf, sizeof(buf),
2282
            "%3d %8d %8.0f %9.0f %9.0f %9.0f %9.0f %9.0f %9.0f %7.1f %9.1f %11.1f %8d %8d %8d %8d %8d %9.1f\n",
2283 2284 2285 2286
            level,
            files,
            versions_->NumLevelBytes(level) / 1048576.0,
            stats_[level].micros / 1e6,
M
Mark Callaghan 已提交
2287 2288 2289 2290 2291 2292
            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,
2293 2294
            // +1 to avoid division by 0
            (bytes_read / 1048576.0) / ((stats_[level].micros+1) / 1000000.0),
2295
            (stats_[level].bytes_written / 1048576.0) /
2296
                ((stats_[level].micros+1) / 1000000.0),
M
Mark Callaghan 已提交
2297 2298 2299 2300
            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,
2301 2302 2303
            stats_[level].count,
            stall_leveln_slowdown_[level] / 1000000.0);
        total_slowdown += stall_leveln_slowdown_[level];
2304 2305 2306
        value->append(buf);
      }
    }
M
Mark Callaghan 已提交
2307 2308

    snprintf(buf, sizeof(buf),
M
Mark Callaghan 已提交
2309
             "Amplification: %.1f rate, %.2f GB in, %.2f GB out, %.2f MB/sec in, %.2f MB/sec out\n",
M
Mark Callaghan 已提交
2310 2311
             (double) total_bytes / stats_[0].bytes_written,
             stats_[0].bytes_written / (1048576.0 * 1024),
M
Mark Callaghan 已提交
2312 2313 2314
             total_bytes / (1048576.0 * 1024),
             stats_[0].bytes_written / 1048576.0 / seconds_up,
             total_bytes / 1048576.0 / seconds_up);
M
Mark Callaghan 已提交
2315 2316 2317 2318 2319 2320 2321
    value->append(buf);

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

    snprintf(buf, sizeof(buf),
            "Stalls(secs): %.3f level0_slowdown, %.3f level0_numfiles, "
2322
            "%.3f memtable_compaction, %.3f leveln_slowdown\n",
M
Mark Callaghan 已提交
2323 2324
            stall_level0_slowdown_ / 1000000.0,
            stall_level0_num_files_ / 1000000.0,
2325
            stall_memtable_compaction_ / 1000000.0,
2326
            total_slowdown / 1000000.0);
M
Mark Callaghan 已提交
2327 2328
    value->append(buf);

2329
    return true;
G
Gabor Cselle 已提交
2330 2331 2332
  } else if (in == "sstables") {
    *value = versions_->current()->DebugString();
    return true;
J
jorlow@chromium.org 已提交
2333
  }
2334

J
jorlow@chromium.org 已提交
2335 2336 2337 2338 2339 2340 2341 2342 2343 2344 2345 2346 2347 2348 2349 2350 2351 2352 2353 2354 2355 2356 2357 2358 2359 2360 2361 2362 2363
  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();
  }
}

2364 2365 2366 2367 2368 2369 2370
inline void DBImpl::DelayLoggingAndReset() {
  if (delayed_writes_ > 0) {
    Log(options_.info_log, "delayed %d write...\n", delayed_writes_ );
    delayed_writes_ = 0;
  }
}

J
jorlow@chromium.org 已提交
2371 2372 2373 2374 2375 2376 2377 2378 2379 2380 2381 2382 2383 2384 2385 2386 2387 2388
// 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);
}

DB::~DB() { }

Status DB::Open(const Options& options, const std::string& dbname,
                DB** dbptr) {
2389
  *dbptr = nullptr;
2390
  StorageOptions soptions;
J
jorlow@chromium.org 已提交
2391

2392
  if (options.block_cache != nullptr && options.no_block_cache) {
2393
    return Status::InvalidArgument(
2394
        "no_block_cache is true while block_cache is not nullptr");
2395
  }
J
jorlow@chromium.org 已提交
2396
  DBImpl* impl = new DBImpl(options, dbname);
2397 2398 2399 2400 2401
  Status s = impl->CreateArchivalDirectory();
  if (!s.ok()) {
    delete impl;
    return s;
  }
J
jorlow@chromium.org 已提交
2402
  impl->mutex_.Lock();
2403
  VersionEdit edit(impl->NumberLevels());
2404
  s = impl->Recover(&edit); // Handles create_if_missing, error_if_exists
J
jorlow@chromium.org 已提交
2405
  if (s.ok()) {
2406
    uint64_t new_log_number = impl->versions_->NewFileNumber();
2407
    unique_ptr<WritableFile> lfile;
2408
    soptions.DisableMmapWrites();
2409
    s = options.env->NewWritableFile(LogFileName(dbname, new_log_number),
2410
                                     &lfile, soptions);
J
jorlow@chromium.org 已提交
2411
    if (s.ok()) {
2412
      lfile->SetPreallocationBlockSize(1.1 * options.write_buffer_size);
2413
      edit.SetLogNumber(new_log_number);
2414
      impl->logfile_number_ = new_log_number;
2415
      impl->log_.reset(new log::Writer(std::move(lfile)));
2416
      s = impl->versions_->LogAndApply(&edit, &impl->mutex_);
J
jorlow@chromium.org 已提交
2417 2418 2419
    }
    if (s.ok()) {
      impl->DeleteObsoleteFiles();
2420
      impl->MaybeScheduleCompaction();
2421
      impl->MaybeScheduleLogDBDeployStats();
J
jorlow@chromium.org 已提交
2422 2423 2424 2425 2426 2427 2428 2429 2430 2431 2432
    }
  }
  impl->mutex_.Unlock();
  if (s.ok()) {
    *dbptr = impl;
  } else {
    delete impl;
  }
  return s;
}

2433 2434 2435
Snapshot::~Snapshot() {
}

J
jorlow@chromium.org 已提交
2436 2437 2438
Status DestroyDB(const std::string& dbname, const Options& options) {
  Env* env = options.env;
  std::vector<std::string> filenames;
2439 2440
  std::vector<std::string> archiveFiles;

J
jorlow@chromium.org 已提交
2441 2442
  // Ignore error in case directory does not exist
  env->GetChildren(dbname, &filenames);
2443 2444
  env->GetChildren(ArchivalDirectory(dbname), &archiveFiles);

J
jorlow@chromium.org 已提交
2445 2446 2447 2448 2449
  if (filenames.empty()) {
    return Status::OK();
  }

  FileLock* lock;
2450 2451
  const std::string lockname = LockFileName(dbname);
  Status result = env->LockFile(lockname, &lock);
J
jorlow@chromium.org 已提交
2452 2453 2454
  if (result.ok()) {
    uint64_t number;
    FileType type;
D
dgrogan@chromium.org 已提交
2455
    for (size_t i = 0; i < filenames.size(); i++) {
2456
      if (ParseFileName(filenames[i], &number, &type) &&
2457
          type != kDBLockFile) {  // Lock file will be deleted at end
K
Kosie van der Merwe 已提交
2458 2459 2460 2461 2462 2463
        Status del;
        if (type == kMetaDatabase) {
          del = DestroyDB(dbname + "/" + filenames[i], options);
        } else {
          del = env->DeleteFile(dbname + "/" + filenames[i]);
        }
J
jorlow@chromium.org 已提交
2464 2465 2466 2467 2468
        if (result.ok() && !del.ok()) {
          result = del;
        }
      }
    }
2469 2470 2471 2472 2473 2474 2475 2476 2477 2478 2479 2480

    // Delete archival files.
    for (size_t i = 0; i < archiveFiles.size(); ++i) {
      ParseFileName(archiveFiles[i], &number, &type);
      if (type == kLogFile) {
        Status del = env->DeleteFile(ArchivalDirectory(dbname) + "/" +
                                     archiveFiles[i]);
        if (result.ok() && !del.ok()) {
          result = del;
        }
      }
    }
2481 2482
    // ignore case where no archival directory is present.
    env->DeleteDir(ArchivalDirectory(dbname));
2483

J
jorlow@chromium.org 已提交
2484
    env->UnlockFile(lock);  // Ignore error since state is already gone
2485
    env->DeleteFile(lockname);
J
jorlow@chromium.org 已提交
2486 2487 2488 2489 2490
    env->DeleteDir(dbname);  // Ignore error in case dir contains other files
  }
  return result;
}

2491 2492
//
// A global method that can dump out the build version
2493 2494
void dumpLeveldbBuildVersion(Logger * log) {
  Log(log, "Git sha %s", leveldb_build_git_sha);
2495 2496
  Log(log, "Compile time %s %s",
      leveldb_build_compile_time, leveldb_build_compile_date);
2497 2498
}

H
Hans Wennborg 已提交
2499
}  // namespace leveldb