mirror of https://github.com/facebook/rocksdb.git
304 lines
11 KiB
C++
304 lines
11 KiB
C++
// Copyright (c) 2011-present, Facebook, Inc. All rights reserved.
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// This source code is licensed under the BSD-style license found in the
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// LICENSE file in the root directory of this source tree. An additional grant
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// of patent rights can be found in the PATENTS file in the same directory.
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//
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// Copyright (c) 2012 Facebook.
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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#ifndef ROCKSDB_LITE
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#include "utilities/checkpoint/checkpoint_impl.h"
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#ifndef __STDC_FORMAT_MACROS
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#define __STDC_FORMAT_MACROS
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#endif
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#include <inttypes.h>
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#include <algorithm>
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#include <string>
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#include <vector>
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#include "db/wal_manager.h"
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#include "port/port.h"
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#include "rocksdb/db.h"
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#include "rocksdb/env.h"
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#include "rocksdb/transaction_log.h"
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#include "rocksdb/utilities/checkpoint.h"
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#include "util/file_util.h"
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#include "util/filename.h"
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#include "util/sync_point.h"
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namespace rocksdb {
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Status Checkpoint::Create(DB* db, Checkpoint** checkpoint_ptr) {
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*checkpoint_ptr = new CheckpointImpl(db);
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return Status::OK();
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}
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Status Checkpoint::CreateCheckpoint(const std::string& checkpoint_dir,
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uint64_t log_size_for_flush) {
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return Status::NotSupported("");
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}
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// Builds an openable snapshot of RocksDB
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Status CheckpointImpl::CreateCheckpoint(const std::string& checkpoint_dir,
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uint64_t log_size_for_flush) {
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DBOptions db_options = db_->GetDBOptions();
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Status s = db_->GetEnv()->FileExists(checkpoint_dir);
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if (s.ok()) {
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return Status::InvalidArgument("Directory exists");
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} else if (!s.IsNotFound()) {
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assert(s.IsIOError());
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return s;
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}
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ROCKS_LOG_INFO(
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db_options.info_log,
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"Started the snapshot process -- creating snapshot in directory %s",
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checkpoint_dir.c_str());
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std::string full_private_path = checkpoint_dir + ".tmp";
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// create snapshot directory
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s = db_->GetEnv()->CreateDir(full_private_path);
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uint64_t sequence_number = 0;
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if (s.ok()) {
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db_->DisableFileDeletions();
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s = CreateCustomCheckpoint(
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db_options,
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[&](const std::string& src_dirname, const std::string& fname,
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FileType) {
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ROCKS_LOG_INFO(db_options.info_log, "Hard Linking %s", fname.c_str());
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return db_->GetEnv()->LinkFile(src_dirname + fname,
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full_private_path + fname);
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} /* link_file_cb */,
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[&](const std::string& src_dirname, const std::string& fname,
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uint64_t size_limit_bytes, FileType) {
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ROCKS_LOG_INFO(db_options.info_log, "Copying %s", fname.c_str());
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return CopyFile(db_->GetEnv(), src_dirname + fname,
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full_private_path + fname, size_limit_bytes,
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db_options.use_fsync);
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} /* copy_file_cb */,
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[&](const std::string& fname, const std::string& contents, FileType) {
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ROCKS_LOG_INFO(db_options.info_log, "Creating %s", fname.c_str());
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return CreateFile(db_->GetEnv(), full_private_path + fname, contents);
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} /* create_file_cb */,
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&sequence_number, log_size_for_flush);
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// we copied all the files, enable file deletions
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db_->EnableFileDeletions(false);
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}
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if (s.ok()) {
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// move tmp private backup to real snapshot directory
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s = db_->GetEnv()->RenameFile(full_private_path, checkpoint_dir);
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}
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if (s.ok()) {
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unique_ptr<Directory> checkpoint_directory;
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db_->GetEnv()->NewDirectory(checkpoint_dir, &checkpoint_directory);
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if (checkpoint_directory != nullptr) {
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s = checkpoint_directory->Fsync();
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}
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}
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if (s.ok()) {
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// here we know that we succeeded and installed the new snapshot
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ROCKS_LOG_INFO(db_options.info_log, "Snapshot DONE. All is good");
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ROCKS_LOG_INFO(db_options.info_log, "Snapshot sequence number: %" PRIu64,
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sequence_number);
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} else {
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// clean all the files we might have created
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ROCKS_LOG_INFO(db_options.info_log, "Snapshot failed -- %s",
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s.ToString().c_str());
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// we have to delete the dir and all its children
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std::vector<std::string> subchildren;
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db_->GetEnv()->GetChildren(full_private_path, &subchildren);
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for (auto& subchild : subchildren) {
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std::string subchild_path = full_private_path + "/" + subchild;
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Status s1 = db_->GetEnv()->DeleteFile(subchild_path);
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ROCKS_LOG_INFO(db_options.info_log, "Delete file %s -- %s",
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subchild_path.c_str(), s1.ToString().c_str());
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}
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// finally delete the private dir
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Status s1 = db_->GetEnv()->DeleteDir(full_private_path);
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ROCKS_LOG_INFO(db_options.info_log, "Delete dir %s -- %s",
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full_private_path.c_str(), s1.ToString().c_str());
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}
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return s;
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}
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Status CheckpointImpl::CreateCustomCheckpoint(
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const DBOptions& db_options,
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std::function<Status(const std::string& src_dirname,
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const std::string& src_fname, FileType type)>
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link_file_cb,
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std::function<Status(const std::string& src_dirname,
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const std::string& src_fname,
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uint64_t size_limit_bytes, FileType type)>
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copy_file_cb,
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std::function<Status(const std::string& fname, const std::string& contents,
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FileType type)>
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create_file_cb,
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uint64_t* sequence_number, uint64_t log_size_for_flush) {
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Status s;
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std::vector<std::string> live_files;
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uint64_t manifest_file_size = 0;
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uint64_t min_log_num = port::kMaxUint64;
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*sequence_number = db_->GetLatestSequenceNumber();
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bool same_fs = true;
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VectorLogPtr live_wal_files;
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bool flush_memtable = true;
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if (s.ok()) {
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if (!db_options.allow_2pc) {
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if (log_size_for_flush == port::kMaxUint64) {
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flush_memtable = false;
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} else if (log_size_for_flush > 0) {
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// If out standing log files are small, we skip the flush.
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s = db_->GetSortedWalFiles(live_wal_files);
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if (!s.ok()) {
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return s;
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}
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// Don't flush column families if total log size is smaller than
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// log_size_for_flush. We copy the log files instead.
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// We may be able to cover 2PC case too.
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uint64_t total_wal_size = 0;
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for (auto& wal : live_wal_files) {
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total_wal_size += wal->SizeFileBytes();
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}
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if (total_wal_size < log_size_for_flush) {
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flush_memtable = false;
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}
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live_wal_files.clear();
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}
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}
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// this will return live_files prefixed with "/"
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s = db_->GetLiveFiles(live_files, &manifest_file_size, flush_memtable);
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if (s.ok() && db_options.allow_2pc) {
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// If 2PC is enabled, we need to get minimum log number after the flush.
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// Need to refetch the live files to recapture the snapshot.
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if (!db_->GetIntProperty(DB::Properties::kMinLogNumberToKeep,
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&min_log_num)) {
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return Status::InvalidArgument(
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"2PC enabled but cannot fine the min log number to keep.");
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}
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// We need to refetch live files with flush to handle this case:
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// A previous 000001.log contains the prepare record of transaction tnx1.
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// The current log file is 000002.log, and sequence_number points to this
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// file.
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// After calling GetLiveFiles(), 000003.log is created.
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// Then tnx1 is committed. The commit record is written to 000003.log.
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// Now we fetch min_log_num, which will be 3.
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// Then only 000002.log and 000003.log will be copied, and 000001.log will
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// be skipped. 000003.log contains commit message of tnx1, but we don't
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// have respective prepare record for it.
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// In order to avoid this situation, we need to force flush to make sure
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// all transactions committed before getting min_log_num will be flushed
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// to SST files.
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// We cannot get min_log_num before calling the GetLiveFiles() for the
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// first time, because if we do that, all the logs files will be included,
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// far more than needed.
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s = db_->GetLiveFiles(live_files, &manifest_file_size, flush_memtable);
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}
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TEST_SYNC_POINT("CheckpointImpl::CreateCheckpoint:SavedLiveFiles1");
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TEST_SYNC_POINT("CheckpointImpl::CreateCheckpoint:SavedLiveFiles2");
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}
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// if we have more than one column family, we need to also get WAL files
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if (s.ok()) {
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s = db_->GetSortedWalFiles(live_wal_files);
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}
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if (!s.ok()) {
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return s;
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}
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size_t wal_size = live_wal_files.size();
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// copy/hard link live_files
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std::string manifest_fname, current_fname;
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for (size_t i = 0; s.ok() && i < live_files.size(); ++i) {
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uint64_t number;
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FileType type;
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bool ok = ParseFileName(live_files[i], &number, &type);
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if (!ok) {
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s = Status::Corruption("Can't parse file name. This is very bad");
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break;
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}
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// we should only get sst, options, manifest and current files here
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assert(type == kTableFile || type == kDescriptorFile ||
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type == kCurrentFile || type == kOptionsFile);
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assert(live_files[i].size() > 0 && live_files[i][0] == '/');
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if (type == kCurrentFile) {
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// We will craft the current file manually to ensure it's consistent with
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// the manifest number. This is necessary because current's file contents
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// can change during checkpoint creation.
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current_fname = live_files[i];
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continue;
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} else if (type == kDescriptorFile) {
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manifest_fname = live_files[i];
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}
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std::string src_fname = live_files[i];
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// rules:
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// * if it's kTableFile, then it's shared
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// * if it's kDescriptorFile, limit the size to manifest_file_size
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// * always copy if cross-device link
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if ((type == kTableFile) && same_fs) {
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s = link_file_cb(db_->GetName(), src_fname, type);
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if (s.IsNotSupported()) {
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same_fs = false;
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s = Status::OK();
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}
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}
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if ((type != kTableFile) || (!same_fs)) {
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s = copy_file_cb(db_->GetName(), src_fname,
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(type == kDescriptorFile) ? manifest_file_size : 0,
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type);
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}
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}
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if (s.ok() && !current_fname.empty() && !manifest_fname.empty()) {
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create_file_cb(current_fname, manifest_fname.substr(1) + "\n",
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kCurrentFile);
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}
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ROCKS_LOG_INFO(db_options.info_log, "Number of log files %" ROCKSDB_PRIszt,
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live_wal_files.size());
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// Link WAL files. Copy exact size of last one because it is the only one
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// that has changes after the last flush.
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for (size_t i = 0; s.ok() && i < wal_size; ++i) {
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if ((live_wal_files[i]->Type() == kAliveLogFile) &&
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(!flush_memtable ||
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live_wal_files[i]->StartSequence() >= *sequence_number ||
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live_wal_files[i]->LogNumber() >= min_log_num)) {
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if (i + 1 == wal_size) {
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s = copy_file_cb(db_options.wal_dir, live_wal_files[i]->PathName(),
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live_wal_files[i]->SizeFileBytes(), kLogFile);
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break;
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}
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if (same_fs) {
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// we only care about live log files
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s = link_file_cb(db_options.wal_dir, live_wal_files[i]->PathName(),
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kLogFile);
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if (s.IsNotSupported()) {
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same_fs = false;
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s = Status::OK();
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}
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}
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if (!same_fs) {
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s = copy_file_cb(db_options.wal_dir, live_wal_files[i]->PathName(), 0,
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kLogFile);
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}
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}
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}
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return s;
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}
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} // namespace rocksdb
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#endif // ROCKSDB_LITE
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