fork of https://github.com/oxigraph/rocksdb and https://github.com/facebook/rocksdb for nextgraph and oxigraph
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244 lines
8.0 KiB
244 lines
8.0 KiB
// Copyright (c) 2021-present, Facebook, Inc. All rights reserved.
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// This source code is licensed under both the GPLv2 (found in the
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// COPYING file in the root directory) and Apache 2.0 License
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// (found in the LICENSE.Apache file in the root directory).
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#ifdef GFLAGS
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#include "db_stress_tool/expected_state.h"
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#include "db_stress_tool/db_stress_shared_state.h"
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namespace ROCKSDB_NAMESPACE {
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ExpectedState::ExpectedState(size_t max_key, size_t num_column_families)
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: max_key_(max_key),
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num_column_families_(num_column_families),
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values_(nullptr) {}
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void ExpectedState::ClearColumnFamily(int cf) {
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std::fill(&Value(cf, 0 /* key */), &Value(cf + 1, 0 /* key */),
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SharedState::DELETION_SENTINEL);
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}
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void ExpectedState::Put(int cf, int64_t key, uint32_t value_base,
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bool pending) {
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if (!pending) {
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// prevent expected-value update from reordering before Write
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std::atomic_thread_fence(std::memory_order_release);
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}
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Value(cf, key).store(pending ? SharedState::UNKNOWN_SENTINEL : value_base,
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std::memory_order_relaxed);
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if (pending) {
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// prevent Write from reordering before expected-value update
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std::atomic_thread_fence(std::memory_order_release);
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}
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}
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uint32_t ExpectedState::Get(int cf, int64_t key) const {
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return Value(cf, key);
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}
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bool ExpectedState::Delete(int cf, int64_t key, bool pending) {
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if (Value(cf, key) == SharedState::DELETION_SENTINEL) {
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return false;
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}
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Put(cf, key, SharedState::DELETION_SENTINEL, pending);
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return true;
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}
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bool ExpectedState::SingleDelete(int cf, int64_t key, bool pending) {
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return Delete(cf, key, pending);
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}
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int ExpectedState::DeleteRange(int cf, int64_t begin_key, int64_t end_key,
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bool pending) {
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int covered = 0;
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for (int64_t key = begin_key; key < end_key; ++key) {
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if (Delete(cf, key, pending)) {
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++covered;
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}
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}
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return covered;
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}
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bool ExpectedState::Exists(int cf, int64_t key) {
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// UNKNOWN_SENTINEL counts as exists. That assures a key for which overwrite
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// is disallowed can't be accidentally added a second time, in which case
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// SingleDelete wouldn't be able to properly delete the key. It does allow
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// the case where a SingleDelete might be added which covers nothing, but
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// that's not a correctness issue.
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uint32_t expected_value = Value(cf, key).load();
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return expected_value != SharedState::DELETION_SENTINEL;
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}
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void ExpectedState::Reset() {
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for (size_t i = 0; i < num_column_families_; ++i) {
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for (size_t j = 0; j < max_key_; ++j) {
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Delete(static_cast<int>(i), j, false /* pending */);
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}
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}
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}
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FileExpectedState::FileExpectedState(std::string expected_state_file_path,
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size_t max_key, size_t num_column_families)
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: ExpectedState(max_key, num_column_families),
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expected_state_file_path_(expected_state_file_path) {}
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Status FileExpectedState::Open(bool create) {
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size_t expected_values_size = GetValuesLen();
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Env* default_env = Env::Default();
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Status status;
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if (create) {
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std::unique_ptr<WritableFile> wfile;
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const EnvOptions soptions;
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status = default_env->NewWritableFile(expected_state_file_path_, &wfile,
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soptions);
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if (status.ok()) {
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std::string buf(expected_values_size, '\0');
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status = wfile->Append(buf);
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}
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}
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if (status.ok()) {
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status = default_env->NewMemoryMappedFileBuffer(
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expected_state_file_path_, &expected_state_mmap_buffer_);
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}
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if (status.ok()) {
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assert(expected_state_mmap_buffer_->GetLen() == expected_values_size);
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values_ = static_cast<std::atomic<uint32_t>*>(
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expected_state_mmap_buffer_->GetBase());
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assert(values_ != nullptr);
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if (create) {
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Reset();
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}
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} else {
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assert(values_ == nullptr);
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}
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return status;
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}
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AnonExpectedState::AnonExpectedState(size_t max_key, size_t num_column_families)
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: ExpectedState(max_key, num_column_families) {}
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#ifndef NDEBUG
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Status AnonExpectedState::Open(bool create) {
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#else
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Status AnonExpectedState::Open(bool /* create */) {
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#endif
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// AnonExpectedState only supports being freshly created.
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assert(create);
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values_allocation_.reset(
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new std::atomic<uint32_t>[GetValuesLen() /
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sizeof(std::atomic<uint32_t>)]);
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values_ = &values_allocation_[0];
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Reset();
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return Status::OK();
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}
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ExpectedStateManager::ExpectedStateManager(size_t max_key,
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size_t num_column_families)
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: max_key_(max_key),
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num_column_families_(num_column_families),
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latest_(nullptr) {}
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ExpectedStateManager::~ExpectedStateManager() {}
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const std::string FileExpectedStateManager::kLatestFilename = "LATEST.state";
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FileExpectedStateManager::FileExpectedStateManager(
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size_t max_key, size_t num_column_families,
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std::string expected_state_dir_path)
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: ExpectedStateManager(max_key, num_column_families),
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expected_state_dir_path_(std::move(expected_state_dir_path)) {
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assert(!expected_state_dir_path_.empty());
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}
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Status FileExpectedStateManager::Open() {
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Status s = Clean();
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std::string expected_state_file_path = GetPathForFilename(kLatestFilename);
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bool found = false;
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if (s.ok()) {
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Status exists_status = Env::Default()->FileExists(expected_state_file_path);
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if (exists_status.ok()) {
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found = true;
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} else if (exists_status.IsNotFound()) {
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found = false;
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} else {
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s = exists_status;
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}
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}
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if (!found) {
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// Initialize the file in a temp path and then rename it. That way, in case
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// this process is killed during setup, `Clean()` will take care of removing
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// the incomplete expected values file.
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std::string temp_expected_state_file_path =
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GetTempPathForFilename(kLatestFilename);
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FileExpectedState temp_expected_state(temp_expected_state_file_path,
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max_key_, num_column_families_);
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if (s.ok()) {
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s = temp_expected_state.Open(true /* create */);
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}
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if (s.ok()) {
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s = Env::Default()->RenameFile(temp_expected_state_file_path,
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expected_state_file_path);
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}
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}
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if (s.ok()) {
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latest_.reset(new FileExpectedState(std::move(expected_state_file_path),
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max_key_, num_column_families_));
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s = latest_->Open(false /* create */);
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}
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return s;
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}
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Status FileExpectedStateManager::Clean() {
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// An incomplete `Open()` could have left behind an invalid temporary file.
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std::string temp_path = GetTempPathForFilename(kLatestFilename);
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Status s = Env::Default()->FileExists(temp_path);
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if (s.ok()) {
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s = Env::Default()->DeleteFile(temp_path);
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} else if (s.IsNotFound()) {
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s = Status::OK();
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}
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return s;
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}
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std::string FileExpectedStateManager::GetTempPathForFilename(
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const std::string& filename) {
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static const std::string kTempFilenamePrefix = ".";
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static const std::string kTempFilenameSuffix = ".tmp";
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assert(!expected_state_dir_path_.empty());
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std::string expected_state_dir_path_slash =
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expected_state_dir_path_.back() == '/' ? expected_state_dir_path_
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: expected_state_dir_path_ + "/";
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return expected_state_dir_path_slash + kTempFilenamePrefix + filename +
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kTempFilenameSuffix;
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}
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std::string FileExpectedStateManager::GetPathForFilename(
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const std::string& filename) {
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assert(!expected_state_dir_path_.empty());
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std::string expected_state_dir_path_slash =
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expected_state_dir_path_.back() == '/' ? expected_state_dir_path_
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: expected_state_dir_path_ + "/";
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return expected_state_dir_path_slash + filename;
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}
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AnonExpectedStateManager::AnonExpectedStateManager(size_t max_key,
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size_t num_column_families)
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: ExpectedStateManager(max_key, num_column_families) {}
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Status AnonExpectedStateManager::Open() {
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latest_.reset(new AnonExpectedState(max_key_, num_column_families_));
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return latest_->Open(true /* create */);
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}
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} // namespace ROCKSDB_NAMESPACE
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#endif // GFLAGS
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