mirror of https://github.com/facebook/rocksdb.git
400 lines
15 KiB
C++
400 lines
15 KiB
C++
// Copyright (c) 2019-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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#pragma once
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#include "rocksdb/env.h"
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#include "rocksdb/file_system.h"
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#include "rocksdb/system_clock.h"
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#ifdef _WIN32
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// Windows API macro interference
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#undef DeleteFile
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#undef GetCurrentTime
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#undef LoadLibrary
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#endif
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namespace ROCKSDB_NAMESPACE {
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// This class supports abstracting different types of an `Env`'s functionality
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// into separate interfaces. It is constructed with a `FileSystem` and a
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// `SystemClock` and delegates:
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// * File system operations to member `file_system_`.
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// * Time related misc operations to member `clock_`.
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// A subclass needs to inherit `CompositeEnv` and provide implementations for
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// the thread management related APIs.
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class CompositeEnv : public Env {
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public:
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// Initialize a CompositeEnvWrapper that delegates all thread/time related
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// calls to env, and all file operations to fs
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explicit CompositeEnv(const std::shared_ptr<FileSystem>& fs,
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const std::shared_ptr<SystemClock>& clock)
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: Env(fs, clock) {}
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Status RegisterDbPaths(const std::vector<std::string>& paths) override {
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return file_system_->RegisterDbPaths(paths);
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}
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Status UnregisterDbPaths(const std::vector<std::string>& paths) override {
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return file_system_->UnregisterDbPaths(paths);
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}
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// The following text is boilerplate that forwards all methods to target()
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Status NewSequentialFile(const std::string& f,
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std::unique_ptr<SequentialFile>* r,
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const EnvOptions& options) override;
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Status NewRandomAccessFile(const std::string& f,
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std::unique_ptr<RandomAccessFile>* r,
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const EnvOptions& options) override;
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Status NewWritableFile(const std::string& f, std::unique_ptr<WritableFile>* r,
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const EnvOptions& options) override;
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Status ReopenWritableFile(const std::string& fname,
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std::unique_ptr<WritableFile>* result,
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const EnvOptions& options) override;
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Status ReuseWritableFile(const std::string& fname,
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const std::string& old_fname,
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std::unique_ptr<WritableFile>* r,
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const EnvOptions& options) override;
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Status NewRandomRWFile(const std::string& fname,
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std::unique_ptr<RandomRWFile>* result,
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const EnvOptions& options) override;
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Status NewMemoryMappedFileBuffer(
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const std::string& fname,
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std::unique_ptr<MemoryMappedFileBuffer>* result) override {
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return file_system_->NewMemoryMappedFileBuffer(fname, result);
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}
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Status NewDirectory(const std::string& name,
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std::unique_ptr<Directory>* result) override;
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Status FileExists(const std::string& f) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->FileExists(f, io_opts, &dbg);
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}
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Status GetChildren(const std::string& dir,
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std::vector<std::string>* r) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetChildren(dir, io_opts, r, &dbg);
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}
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Status GetChildrenFileAttributes(
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const std::string& dir, std::vector<FileAttributes>* result) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetChildrenFileAttributes(dir, io_opts, result, &dbg);
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}
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Status DeleteFile(const std::string& f) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->DeleteFile(f, io_opts, &dbg);
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}
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Status Truncate(const std::string& fname, size_t size) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->Truncate(fname, size, io_opts, &dbg);
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}
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Status CreateDir(const std::string& d) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->CreateDir(d, io_opts, &dbg);
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}
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Status CreateDirIfMissing(const std::string& d) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->CreateDirIfMissing(d, io_opts, &dbg);
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}
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Status DeleteDir(const std::string& d) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->DeleteDir(d, io_opts, &dbg);
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}
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Status GetFileSize(const std::string& f, uint64_t* s) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetFileSize(f, io_opts, s, &dbg);
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}
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Status GetFileModificationTime(const std::string& fname,
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uint64_t* file_mtime) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetFileModificationTime(fname, io_opts, file_mtime,
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&dbg);
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}
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Status RenameFile(const std::string& s, const std::string& t) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->RenameFile(s, t, io_opts, &dbg);
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}
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Status LinkFile(const std::string& s, const std::string& t) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->LinkFile(s, t, io_opts, &dbg);
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}
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Status NumFileLinks(const std::string& fname, uint64_t* count) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->NumFileLinks(fname, io_opts, count, &dbg);
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}
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Status AreFilesSame(const std::string& first, const std::string& second,
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bool* res) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->AreFilesSame(first, second, io_opts, res, &dbg);
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}
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Status LockFile(const std::string& f, FileLock** l) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->LockFile(f, io_opts, l, &dbg);
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}
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Status UnlockFile(FileLock* l) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->UnlockFile(l, io_opts, &dbg);
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}
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Status GetAbsolutePath(const std::string& db_path,
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std::string* output_path) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetAbsolutePath(db_path, io_opts, output_path, &dbg);
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}
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Status NewLogger(const std::string& fname,
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std::shared_ptr<Logger>* result) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->NewLogger(fname, io_opts, result, &dbg);
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}
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Status IsDirectory(const std::string& path, bool* is_dir) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->IsDirectory(path, io_opts, is_dir, &dbg);
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}
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Status GetTestDirectory(std::string* path) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetTestDirectory(io_opts, path, &dbg);
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}
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EnvOptions OptimizeForLogRead(const EnvOptions& env_options) const override {
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return file_system_->OptimizeForLogRead(FileOptions(env_options));
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}
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EnvOptions OptimizeForManifestRead(
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const EnvOptions& env_options) const override {
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return file_system_->OptimizeForManifestRead(FileOptions(env_options));
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}
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EnvOptions OptimizeForLogWrite(const EnvOptions& env_options,
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const DBOptions& db_options) const override {
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return file_system_->OptimizeForLogWrite(FileOptions(env_options),
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db_options);
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}
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EnvOptions OptimizeForManifestWrite(
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const EnvOptions& env_options) const override {
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return file_system_->OptimizeForManifestWrite(FileOptions(env_options));
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}
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EnvOptions OptimizeForCompactionTableWrite(
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const EnvOptions& env_options,
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const ImmutableDBOptions& immutable_ops) const override {
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return file_system_->OptimizeForCompactionTableWrite(
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FileOptions(env_options), immutable_ops);
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}
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EnvOptions OptimizeForCompactionTableRead(
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const EnvOptions& env_options,
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const ImmutableDBOptions& db_options) const override {
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return file_system_->OptimizeForCompactionTableRead(
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FileOptions(env_options), db_options);
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}
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EnvOptions OptimizeForBlobFileRead(
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const EnvOptions& env_options,
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const ImmutableDBOptions& db_options) const override {
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return file_system_->OptimizeForBlobFileRead(FileOptions(env_options),
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db_options);
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}
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// This seems to clash with a macro on Windows, so #undef it here
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#ifdef GetFreeSpace
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#undef GetFreeSpace
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#endif
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Status GetFreeSpace(const std::string& path, uint64_t* diskfree) override {
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IOOptions io_opts;
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IODebugContext dbg;
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return file_system_->GetFreeSpace(path, io_opts, diskfree, &dbg);
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}
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uint64_t NowMicros() override { return system_clock_->NowMicros(); }
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uint64_t NowNanos() override { return system_clock_->NowNanos(); }
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uint64_t NowCPUNanos() override { return system_clock_->CPUNanos(); }
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void SleepForMicroseconds(int micros) override {
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system_clock_->SleepForMicroseconds(micros);
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}
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Status GetCurrentTime(int64_t* unix_time) override {
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return system_clock_->GetCurrentTime(unix_time);
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}
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std::string TimeToString(uint64_t time) override {
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return system_clock_->TimeToString(time);
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}
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};
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// A `CompositeEnvWrapper` is constructed with a target `Env` object, an
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// optional `FileSystem` object and an optional `SystemClock` object.
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// `Env::GetFileSystem()` is a fallback file system if no such object is
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// explicitly provided. Similarly, `Env::GetSystemClock()` is a fallback system
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// clock.
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// Besides delegating corresponding functionality to `file_system_` and `clock_`
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// which is inherited from `CompositeEnv`, it also implements the thread
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// management APIs by delegating them to the target `Env` object.
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//
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// Effectively, this class helps to support using customized file system
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// implementations such as a remote file system instead of the default file
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// system provided by the operating system.
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//
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// Also see public API `NewCompositeEnv` in rocksdb/include/env.h
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class CompositeEnvWrapper : public CompositeEnv {
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public:
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// Initialize a CompositeEnvWrapper that delegates all thread/time related
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// calls to env, and all file operations to fs
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explicit CompositeEnvWrapper(Env* env)
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: CompositeEnvWrapper(env, env->GetFileSystem(), env->GetSystemClock()) {}
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explicit CompositeEnvWrapper(Env* env, const std::shared_ptr<FileSystem>& fs)
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: CompositeEnvWrapper(env, fs, env->GetSystemClock()) {}
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explicit CompositeEnvWrapper(Env* env, const std::shared_ptr<SystemClock>& sc)
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: CompositeEnvWrapper(env, env->GetFileSystem(), sc) {}
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explicit CompositeEnvWrapper(Env* env, const std::shared_ptr<FileSystem>& fs,
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const std::shared_ptr<SystemClock>& sc);
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explicit CompositeEnvWrapper(const std::shared_ptr<Env>& env,
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const std::shared_ptr<FileSystem>& fs)
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: CompositeEnvWrapper(env, fs, env->GetSystemClock()) {}
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explicit CompositeEnvWrapper(const std::shared_ptr<Env>& env,
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const std::shared_ptr<SystemClock>& sc)
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: CompositeEnvWrapper(env, env->GetFileSystem(), sc) {}
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explicit CompositeEnvWrapper(const std::shared_ptr<Env>& env,
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const std::shared_ptr<FileSystem>& fs,
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const std::shared_ptr<SystemClock>& sc);
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static const char* kClassName() { return "CompositeEnv"; }
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const char* Name() const override { return kClassName(); }
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bool IsInstanceOf(const std::string& name) const override {
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if (name == kClassName()) {
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return true;
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} else {
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return CompositeEnv::IsInstanceOf(name);
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}
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}
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const Customizable* Inner() const override { return target_.env; }
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Status PrepareOptions(const ConfigOptions& options) override;
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std::string SerializeOptions(const ConfigOptions& config_options,
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const std::string& header) const override;
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// Return the target to which this Env forwards all calls
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Env* env_target() const { return target_.env; }
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#if !defined(OS_WIN) && !defined(ROCKSDB_NO_DYNAMIC_EXTENSION)
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Status LoadLibrary(const std::string& lib_name,
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const std::string& search_path,
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std::shared_ptr<DynamicLibrary>* result) override {
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return target_.env->LoadLibrary(lib_name, search_path, result);
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}
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#endif
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void Schedule(void (*f)(void* arg), void* a, Priority pri,
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void* tag = nullptr, void (*u)(void* arg) = nullptr) override {
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return target_.env->Schedule(f, a, pri, tag, u);
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}
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int UnSchedule(void* tag, Priority pri) override {
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return target_.env->UnSchedule(tag, pri);
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}
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void StartThread(void (*f)(void*), void* a) override {
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return target_.env->StartThread(f, a);
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}
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void WaitForJoin() override { return target_.env->WaitForJoin(); }
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unsigned int GetThreadPoolQueueLen(Priority pri = LOW) const override {
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return target_.env->GetThreadPoolQueueLen(pri);
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}
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int ReserveThreads(int threads_to_be_reserved, Priority pri) override {
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return target_.env->ReserveThreads(threads_to_be_reserved, pri);
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}
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int ReleaseThreads(int threads_to_be_released, Priority pri) override {
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return target_.env->ReleaseThreads(threads_to_be_released, pri);
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}
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Status GetHostName(char* name, uint64_t len) override {
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return target_.env->GetHostName(name, len);
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}
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void SetBackgroundThreads(int num, Priority pri) override {
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return target_.env->SetBackgroundThreads(num, pri);
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}
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int GetBackgroundThreads(Priority pri) override {
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return target_.env->GetBackgroundThreads(pri);
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}
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Status SetAllowNonOwnerAccess(bool allow_non_owner_access) override {
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return target_.env->SetAllowNonOwnerAccess(allow_non_owner_access);
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}
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void IncBackgroundThreadsIfNeeded(int num, Priority pri) override {
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return target_.env->IncBackgroundThreadsIfNeeded(num, pri);
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}
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void LowerThreadPoolIOPriority(Priority pool) override {
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target_.env->LowerThreadPoolIOPriority(pool);
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}
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void LowerThreadPoolCPUPriority(Priority pool) override {
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target_.env->LowerThreadPoolCPUPriority(pool);
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}
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Status LowerThreadPoolCPUPriority(Priority pool, CpuPriority pri) override {
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return target_.env->LowerThreadPoolCPUPriority(pool, pri);
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}
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Status GetThreadList(std::vector<ThreadStatus>* thread_list) override {
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return target_.env->GetThreadList(thread_list);
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}
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ThreadStatusUpdater* GetThreadStatusUpdater() const override {
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return target_.env->GetThreadStatusUpdater();
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}
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uint64_t GetThreadID() const override { return target_.env->GetThreadID(); }
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std::string GenerateUniqueId() override {
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return target_.env->GenerateUniqueId();
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}
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private:
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EnvWrapper::Target target_;
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};
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} // namespace ROCKSDB_NAMESPACE
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